Coordination Chemistry Reviews
Journal Impact IF - Analysis · Trend · Prediction · Ranking


New

Journal Impact IF

2019-2020

15.367

14.0%

Journal Impact IF Trend

Related Journals

Popular Journals

Coordination Chemistry Reviews

The 2019-2020 Journal Impact IF of Coordination Chemistry Reviews is 15.367, which is just updated in 2020.

Coordination Chemistry Reviews Impact Factor
Highest IF
15.367
Highest Journal Impact IF

The highest Journal Impact IF of Coordination Chemistry Reviews is 15.367.

Lowest IF
11.016
Lowest Journal Impact IF

The lowest Journal Impact IF of Coordination Chemistry Reviews is 11.016.

Total Growth Rate
26.9%
IF Total Growth Rate

The total growth rate of Coordination Chemistry Reviews IF is 26.9%.

Annual Growth Rate
3.0%
IF Annual Growth Rate

The annual growth rate of Coordination Chemistry Reviews IF is 3.0%.

Journal Impact IF Ranking

Subcategory Quartile Rank Percentile
Inorganic Chemistry Q1 1/69

Inorganic Chemistry 99%

Materials Chemistry Q1 5/287

Materials Chemistry 98%

Physical and Theoretical Chemistry Q1 1/162

Physical and Theoretical Chemistry 99%

Journal Impact IF Ranking

· In the Inorganic Chemistry research field, the Quartile of Coordination Chemistry Reviews is Q1. Coordination Chemistry Reviews has been ranked #1 over 69 related journals in the Inorganic Chemistry research category. The ranking percentile of Coordination Chemistry Reviews is around 99% in the field of Inorganic Chemistry.
· In the Materials Chemistry research field, the Quartile of Coordination Chemistry Reviews is Q1. Coordination Chemistry Reviews has been ranked #5 over 287 related journals in the Materials Chemistry research category. The ranking percentile of Coordination Chemistry Reviews is around 98% in the field of Materials Chemistry.
· In the Physical and Theoretical Chemistry research field, the Quartile of Coordination Chemistry Reviews is Q1. Coordination Chemistry Reviews has been ranked #1 over 162 related journals in the Physical and Theoretical Chemistry research category. The ranking percentile of Coordination Chemistry Reviews is around 99% in the field of Physical and Theoretical Chemistry.

Coordination Chemistry Reviews Impact Factor 2020-2021 Prediction

Coordination Chemistry Reviews Impact Factor Predition System

Coordination Chemistry Reviews Impact Factor Prediction System is now online. You can start share your valuable insights with the community.

Predict Check All Preditions
Total Publications
5730
Total Citations
633268

Annual Publication Volume

Annual Citation Record

International Collaboration Trend

Cited Documents Trend

Journal Impact IF History

Year Journal Impact IF
Year Journal Impact IF
2019-2020 15.367
2018-2019 13.476
2017-2018 14.499
2016-2017 13.324
2015-2016 12.994
2014-2015 12.239
2013-2014 12.098
2012-2013 11.016
2011-2012 12.11
Journal Impact IF History

· The 2019-2020 Journal Impact IF of Coordination Chemistry Reviews is 15.367
· The 2018-2019 Journal Impact IF of Coordination Chemistry Reviews is 13.476
· The 2017-2018 Journal Impact IF of Coordination Chemistry Reviews is 14.499
· The 2016-2017 Journal Impact IF of Coordination Chemistry Reviews is 13.324
· The 2015-2016 Journal Impact IF of Coordination Chemistry Reviews is 12.994
· The 2014-2015 Journal Impact IF of Coordination Chemistry Reviews is 12.239
· The 2013-2014 Journal Impact IF of Coordination Chemistry Reviews is 12.098
· The 2012-2013 Journal Impact IF of Coordination Chemistry Reviews is 11.016
· The 2011-2012 Journal Impact IF of Coordination Chemistry Reviews is 12.11

Publications Cites Dataset

Year Publications Citations
Year Publications Citations
1965 0 1
1966 46 5
1967 28 47
1968 24 110
1969 18 190
1970 16 227
1971 23 316
1972 41 410
1973 27 644
1974 30 734
1975 50 778
1976 29 988
1977 20 1048
1978 25 1080
1979 20 1114
1980 25 1334
1981 28 1372
1982 51 1451
1983 28 1503
1984 31 1483
1985 54 1786
1986 17 1762
1987 35 1823
1988 40 2038
1989 30 2062
1990 81 2616
1991 59 2712
1992 58 3045
1993 68 3105
1994 96 3618
1995 54 3672
1996 101 4028
1997 88 4147
1998 171 4408
1999 210 4847
2000 173 5517
2001 139 6632
2002 158 7860
2003 136 9509
2004 111 9996
2005 169 13704
2006 153 16814
2007 129 20432
2008 135 20923
2009 150 24673
2010 169 26664
2011 158 35194
2012 144 37712
2013 178 42379
2014 143 42847
2015 159 43208
2016 390 42057
2017 348 43765
2018 211 33913
2019 238 37887
2020 306 45170
2021 111 5908
Publications Cites Dataset

· The Coordination Chemistry Reviews has published 0 reports and received 1 citations in 1965.
· The Coordination Chemistry Reviews has published 46 reports and received 5 citations in 1966.
· The Coordination Chemistry Reviews has published 28 reports and received 47 citations in 1967.
· The Coordination Chemistry Reviews has published 24 reports and received 110 citations in 1968.
· The Coordination Chemistry Reviews has published 18 reports and received 190 citations in 1969.
· The Coordination Chemistry Reviews has published 16 reports and received 227 citations in 1970.
· The Coordination Chemistry Reviews has published 23 reports and received 316 citations in 1971.
· The Coordination Chemistry Reviews has published 41 reports and received 410 citations in 1972.
· The Coordination Chemistry Reviews has published 27 reports and received 644 citations in 1973.
· The Coordination Chemistry Reviews has published 30 reports and received 734 citations in 1974.
· The Coordination Chemistry Reviews has published 50 reports and received 778 citations in 1975.
· The Coordination Chemistry Reviews has published 29 reports and received 988 citations in 1976.
· The Coordination Chemistry Reviews has published 20 reports and received 1048 citations in 1977.
· The Coordination Chemistry Reviews has published 25 reports and received 1080 citations in 1978.
· The Coordination Chemistry Reviews has published 20 reports and received 1114 citations in 1979.
· The Coordination Chemistry Reviews has published 25 reports and received 1334 citations in 1980.
· The Coordination Chemistry Reviews has published 28 reports and received 1372 citations in 1981.
· The Coordination Chemistry Reviews has published 51 reports and received 1451 citations in 1982.
· The Coordination Chemistry Reviews has published 28 reports and received 1503 citations in 1983.
· The Coordination Chemistry Reviews has published 31 reports and received 1483 citations in 1984.
· The Coordination Chemistry Reviews has published 54 reports and received 1786 citations in 1985.
· The Coordination Chemistry Reviews has published 17 reports and received 1762 citations in 1986.
· The Coordination Chemistry Reviews has published 35 reports and received 1823 citations in 1987.
· The Coordination Chemistry Reviews has published 40 reports and received 2038 citations in 1988.
· The Coordination Chemistry Reviews has published 30 reports and received 2062 citations in 1989.
· The Coordination Chemistry Reviews has published 81 reports and received 2616 citations in 1990.
· The Coordination Chemistry Reviews has published 59 reports and received 2712 citations in 1991.
· The Coordination Chemistry Reviews has published 58 reports and received 3045 citations in 1992.
· The Coordination Chemistry Reviews has published 68 reports and received 3105 citations in 1993.
· The Coordination Chemistry Reviews has published 96 reports and received 3618 citations in 1994.
· The Coordination Chemistry Reviews has published 54 reports and received 3672 citations in 1995.
· The Coordination Chemistry Reviews has published 101 reports and received 4028 citations in 1996.
· The Coordination Chemistry Reviews has published 88 reports and received 4147 citations in 1997.
· The Coordination Chemistry Reviews has published 171 reports and received 4408 citations in 1998.
· The Coordination Chemistry Reviews has published 210 reports and received 4847 citations in 1999.
· The Coordination Chemistry Reviews has published 173 reports and received 5517 citations in 2000.
· The Coordination Chemistry Reviews has published 139 reports and received 6632 citations in 2001.
· The Coordination Chemistry Reviews has published 158 reports and received 7860 citations in 2002.
· The Coordination Chemistry Reviews has published 136 reports and received 9509 citations in 2003.
· The Coordination Chemistry Reviews has published 111 reports and received 9996 citations in 2004.
· The Coordination Chemistry Reviews has published 169 reports and received 13704 citations in 2005.
· The Coordination Chemistry Reviews has published 153 reports and received 16814 citations in 2006.
· The Coordination Chemistry Reviews has published 129 reports and received 20432 citations in 2007.
· The Coordination Chemistry Reviews has published 135 reports and received 20923 citations in 2008.
· The Coordination Chemistry Reviews has published 150 reports and received 24673 citations in 2009.
· The Coordination Chemistry Reviews has published 169 reports and received 26664 citations in 2010.
· The Coordination Chemistry Reviews has published 158 reports and received 35194 citations in 2011.
· The Coordination Chemistry Reviews has published 144 reports and received 37712 citations in 2012.
· The Coordination Chemistry Reviews has published 178 reports and received 42379 citations in 2013.
· The Coordination Chemistry Reviews has published 143 reports and received 42847 citations in 2014.
· The Coordination Chemistry Reviews has published 159 reports and received 43208 citations in 2015.
· The Coordination Chemistry Reviews has published 390 reports and received 42057 citations in 2016.
· The Coordination Chemistry Reviews has published 348 reports and received 43765 citations in 2017.
· The Coordination Chemistry Reviews has published 211 reports and received 33913 citations in 2018.
· The Coordination Chemistry Reviews has published 238 reports and received 37887 citations in 2019.
· The Coordination Chemistry Reviews has published 306 reports and received 45170 citations in 2020.
· The Coordination Chemistry Reviews has published 111 reports and received 5908 citations in 2021.
· The total publications of Coordination Chemistry Reviews is 5730.
· The total citations of Coordination Chemistry Reviews is 633268.

What is Impact Factor?

The impact factor (IF) or journal impact factor (JIF) of an academic journal is a scientometric index calculated by Clarivate that reflects the yearly average number of citations of articles published in the last two years in a given journal. It is frequently used as a proxy for the relative importance of a journal within its field; journals with higher impact factor values are often deemed to be more important, or carry more intrinsic prestige in their respective fields, than those with lower values.

Coordination Chemistry Reviews | Academic Accelerator - About the Impact Factor

Impact factor is commonly used to evaluate the relative importance of a journal within its field and to measure the frequency with which the “average article” in a journal has been cited in a particular time period. Journal which publishes more review articles will get highest IFs. Journals with higher IFs believed to be more important than those with lower ones. According to Eugene Garfield “impact simply reflects the ability of the journals and editors to attract the best paper available.” Journal which publishes more review articles will get maximum IFs. The Impact Factor of an academic journal is a scientometric Metric that reflects the yearly average number of citations that recent articles published in a given journal received. It is frequently used as a Metric for the relative importance of a journal within its field; journals with higher Impact Factor are often deemed to be more important than those with lower ones. The Coordination Chemistry Reviews Impact Factor IF measures the average number of citations received in a particular year (2020) by papers published in the Coordination Chemistry Reviews during the two preceding years (2018-2019). Note that 2020 Impact Factor are reported in 2021; they cannot be calculated until all of the 2020 publications have been processed by the indexing agency. New journals, which are indexed from their first published issue, will receive an impact factor after two years of indexing; in this case, the citations to the year prior to Volume 1, and the number of articles published in the year prior to Volume 1, are known zero values. Journals that are indexed starting with a volume other than the first volume will not get an impact factor until they have been indexed for three years. Occasionally, Journal Citation Reports assigns an impact factor to new journals with less than two years of indexing, based on partial citation data. The calculation always uses two complete and known years of item counts, but for new titles one of the known counts is zero. Annuals and other irregular publications sometimes publish no items in a particular year, affecting the count. The impact factor relates to a specific time period; it is possible to calculate it for any desired period. In addition to the 2-year Impact Factor, the 3-year Impact Factor, 4-year Impact Factor, 5-year Impact Factor, Real-Time Impact Factor can provide further insights and factors into the impact of Coordination Chemistry Reviews.

History

The impact factor was devised by Eugene Garfield, the founder of the Institute for Scientific Information (ISI). Impact factors are calculated yearly starting from 1975 for journals listed in the Journal Citation Reports (JCR). ISI was acquired by Thomson Scientific & Healthcare in 1992, and became known as Thomson ISI. In 2018, Thomson ISI was sold to Onex Corporation and Baring Private Equity Asia. They founded a new corporation, Clarivate, which is now the publisher of the JCR.

Use

The impact factor is used to compare different journals within a certain field. The Web of Science indexes more than 11,500 science and social science journals. Journal impact factors are often used to evaluate the merit of individual articles and individual researchers. This use of impact factors was summarised by Hoeffel:

Impact Factor is not a perfect tool to measure the quality of articles but there is nothing better and it has the advantage of already being in existence and is, therefore, a good technique for scientific evaluation. Experience has shown that in each specialty the best journals are those in which it is most difficult to have an article accepted, and these are the journals that have a high impact factor. Most of these journals existed long before the impact factor was devised. The use of impact factor as a measure of quality is widespread because it fits well with the opinion we have in each field of the best journals in our specialty....In conclusion, prestigious journals publish papers of high level. Therefore, their impact factor is high, and not the contrary.

Eugene Garfield

In brief, Impact factors may be used by:
  • Authors to decide where to submit an article for publication.
  • Libraries to make collection development decisions
  • Academic departments to assess academic productivity
  • Academic departments to make decisions on promotion and tenure.
As impact factors are a journal-level metric, rather than an article- or individual-level metric, this use is controversial. Garfield agrees with Hoeffel,but warns about the "misuse in evaluating individuals" because there is "a wide variation [of citations] from article to article within a single journal". Other things to consider about Impact Factors:
  • Many journals do not have an impact factor.
  • The impact factor cannot assess the quality of individual articles. Even if citations were evenly distributed among articles, the impact factor would only measure the interests of other researchers in an article, not its importance and usefulness.
  • Only research articles, technical notes and reviews are “citable” items. Editorials, letters, news items and meeting abstracts are “non-citable items”.
  • Only a small percentage of articles are highly cited and they are found in a small subset of journals. This small proportion accounts for a large percentage of citations.
  • Controversial papers, such as those based on fraudulent data, may be highly cited, distorting the impact factor of a journal.
  • Citation bias may exist. For example, English language resources may be favoured. Authors may cite their own work.
Moreover, informed and careful use of these impact data is essential, and should be based on a thorough understanding of the methodology used to generate impact factors. There are controversial aspects of using impact factors:
  • It is not clear whether the number of times a paper is cited measures its actual quality.
  • Some databases that calculate impact factors fail to incorporate publications including textbooks, handbooks and reference books.
  • Certain disciplines have low numbers of journals and usage. Therefore, one should only compare journals or researchers within the same discipline.
  • Review articles normally are cited more often and therefore can skew results.
  • Self-citing may also skew results.
  • Some resources used to calculate impact factors have inadequate international coverage.
  • Editorial policies can artificially inflate an impact factor.
Impact factors have often been used in advancement and tenure decision-making. Many recognize that this is a coarse tool for such important decisions, and that a multitude of factors should be taken into account in these deliberations. When considering the use of the impact factor (IF), keep these aspects in mind:
  • IF analysis is limited to citations from the journals indexed by the Web of Science/Web of Knowledge. Currently, the Web of Science indexes only 8621 journals across the full breadth of the sciences, and just 3121 in the social sciences.
  • A high IF/citation rate says nothing about the quality -- or even, validity -- of the references being cited. Notorious or even retracted articles often attract a lot of attention, hence a high number of citations. The notority related to the first publication on "cold fusion" is one such example.
  • Journals that publish more "review articles" are often found near the top of the rankings. While not known for publishing new, creative findings, these individual articles tend to be heavily cited.
  • The IF measures the average number of citations to articles in the journal -- given this, a small number of highly-cited articles will skew the figure.
  • It takes several years for new journals to be added to the list of titles indexed by the Web of Science/Web of Knowledge, so these newer titles will be under-represented.
  • It's alleged that journal editors have learned to "game" the system, encouraging authors to cite their works previously published in the same journal.
Comparing Journals Across Disciplines? Not a good idea! Using Impact Factors within a given discipline should only be done with great care, as described above. Using impact factor data to compare journals across disciplines is even more problematic. Here are some of the reasons:
  • Disciplines where older literature is still referenced, such as Chemistry and Mathematics, offer challenges to the methodolgy since older citations (older than two years) are not used to calculate the impact factor for a given journal. (Five-year impact factor analysis, which can be calculated using the Journal Citation Index database, helps smooth out this problem only to some degree.)
  • Different disciplines have different practices regarding tendency to cite larger numbers of references. Higher overall citation rates will bump upward impact factor measurements.
  • Where it's common for large numbers of authors to collaborate on a single paper, such as in Physics, the tendency of authors to cite themselves (and in this case, more authors) will result in increased citation rates.

Pros and Cons of the Impact Factor

Pros:

  • A vetted, established metric for measuring journal impact within a discipline.
  • Designed to eliminate bias based on journal size and frequency.
Cons:
  • Individual articles makes an uneven contribution to overall Impact Factor.
  • Impact Factor does not account for certain things, things like context (postive or negative citaion) and intentionality (self-citation).
  • The metric is proprietary to and bound by the contents of the Thomson Reuters database.
  • Citations, on which the Impact Factor is based, count for less than 1% of an article's overall use.

Criticism

Numerous critiques have been made regarding the use of impact factors. A 2007 study noted that the most fundamental flaw is that impact factors present the mean of data that are not normally distributed, and suggested that it would be more appropriate to present the median of these data. There is also a more general debate on the validity of the impact factor as a measure of journal importance and the effect of policies that editors may adopt to boost their impact factor (perhaps to the detriment of readers and writers). Other criticism focuses on the effect of the impact factor on behavior of scholars, editors and other stakeholders. Others have made more general criticisms, arguing that emphasis on impact factor results from negative influence of neoliberal policies on academia claiming that what is needed is not just replacement of the impact factor with more sophisticated metrics for science publications but also discussion on the social value of research assessment and the growing precariousness of scientific careers in higher education.
Experts stress that there are limitations in using impact factors to evaluate a scholar's work. There are many reasons cited for not relying on impact factor alone to evaluate the output of a particular individual. Among these are the following:

  • A single factor is not sufficient for evaluating an author's work.
  • Journal values are meaningless unless compared within the same discipline. Impact factors vary among disciplines.
  • The impact factor was originally devised to show the impact of a specific journal, not a specific scholar. The quality and impact of the author's work may extend beyond the impact of a particular journal.
According to Jim Testa, a researcher for ThomsonReuters Scientific, the most widespread misuse of the Impact Factor is to evaluate the work of an individual author (instead of a journal). "To say that because a researcher is publishing in a certain journal, he or she is more influential or deserves more credit is not necessarily true. There are many other variables to consider." (interview 6/26/2008 in Thomson Reuters blog entry)

Coordination Chemistry Reviews
Journal Profile

About

The journal offers rapid publication of review articles on topics of current interest and importance in coordination chemistry. The term coordination chemistry is interpreted broadly, and includes aspects of organometallic, supramolecular, theoretical, and bioinorganic chemistry. The journal also publishes review articles on catalysis, materials chemistry and metal-organic frameworks which focus on the coordination chemistry aspects of these topics. In general, the reviews survey developments in a particular area during the last few years, or discuss the results obtained with a particular technique. We welcome reviews both from established researchers and excellent younger chemists.Special issues are published from time to time on topics of current interest and importance. These special issues may also focus on contributions from a specific country or area of the world, or contain the proceedings of invited lectures to major international conferences. Full book length articles also appear occasionally. The journal also incorporates special volumes containing annual reviews of main group chemistry, on transition metal group chemistry, and on organometallic chemistry. Excellent reviews are essential educational tools for those working in the area of coordination chemistry. Coordination Chemistry Reviews will continue to act as a focal point for informative critical surveys of inorganic and physical inorganic chemistry. None

Highly Cited Keywords

ISSN
0010-8545
ISSN

The ISSN of Coordination Chemistry Reviews is 0010-8545 . An ISSN is an 8-digit code used to identify newspapers, journals, magazines and periodicals of all kinds and on all media–print and electronic.

ISSN (Online)
-
ISSN (Online)

The ISSN (Online) of Coordination Chemistry Reviews is - . An ISSN is an 8-digit code used to identify newspapers, journals, magazines and periodicals of all kinds and on all media–print and electronic.

Publisher
Elsevier
Publisher

Coordination Chemistry Reviews is published by Elsevier .

Publication Frequency
Monthly
Publication Frequency

Coordination Chemistry Reviews publishes reports Monthly .

Coverage
1966 - Present
Coverage

The Publication History of Coordination Chemistry Reviews covers 1966 - Present .

Open Access
NO
Open Access

Coordination Chemistry Reviews is Subscription-based (non-OA) Journal. Publishers own the rights to the articles in their journals. Anyone who wants to read the articles should pay by individual or institution to access the articles. Anyone who wants to use the articles in any way must obtain permission from the publishers.

Publication Fee
Publication Fee

There is no publication fee for submiting manuscript to Coordination Chemistry Reviews. Coordination Chemistry Reviews is Subscription-based (non-OA) Journal. Publishers own the rights to the articles in their journals. Anyone who wants to read the articles should pay by individual or institution to access the articles.

Language
English
Language

The language of Coordination Chemistry Reviews is English .

Country/Region
Netherlands
Country/Region

The publisher of Coordination Chemistry Reviews is Elsevier , which locates in Netherlands .

Selected Articles

Full Title Authors
Full Title Authors
Organometallic catalysis in biological media and living settings Zheng Wang · Gregory A. Solan · Gregory A. Solan · Wenjuan Zhang · Wenjuan Zhang · Wen-Hua Sun · Wen-Hua Sun
Non-heteroatom-substituted alkylidene complexes of groups 10 and 11 Pallabi Samaddar · Youn-Suk Son · Daniel C.W. Tsang · Ki-Hyun Kim · Sandeep Kumar · Sandeep Kumar
An inorganic overview of natural Aβ fragments: Copper(II) and zinc(II)-mediated pathways Ricca Rahman Nasaruddin · Tiankai Chen · Ning Yan · Jianping Xie · Jianping Xie
The luminescence properties of multinuclear platinum complexes Luke K. McKenzie · Helen E. Bryant · Julia A. Weinstein · Julia A. Weinstein
Multinary metal chalcogenides with tetrahedral structures for second-order nonlinear optical, photocatalytic, and photovoltaic applications Konrad Kowalski · Konrad Kowalski
Chelator combination as therapeutic strategy in mercury and lead poisonings Wolfgang Kaim · Katharina Beyer · Vasileios Filippou · Stanislav Záliš · Stanislav Záliš
Metal binding properties, stability and reactivity of zinc fingers Valeria Lanza · Francesco Bellia · Enrico Rizzarelli · Enrico Rizzarelli
Metal-based BODIPY derivatives as multimodal tools for life sciences Moghimi Nafiseh · F R Rahsepar · K T Leung · K T Leung
Metal-organic frameworks and their composites as efficient electrodes for supercapacitor applications Emma V. Puttock · Melissa T. Walden · J. A. Gareth Williams · J. A. Gareth Williams
Electrogenerated chemiluminescence from metal complexes-based nanoparticles for highly sensitive sensors applications Man-Man Chen · Huaiguo Xue · Sheng-Ping Guo · Sheng-Ping Guo
Progress in graphene-based materials as superior media for sensing, sorption, and separation of gaseous pollutants Katarzyna Kluska · Justyna Adamczyk · Artur Krężel · Artur Krężel
Multiply-bonded dinuclear complexes of early-transition metals as minimum entities of metal cluster catalysts Shashank Sundriyal · Shashank Sundriyal · Harmeet Kaur · Harmeet Kaur · Sanjeev K. Bhardwaj · Sanjeev K. Bhardwaj · Sunita Mishra · Sunita Mishra · Ki-Hyun Kim · Akash Deep · Akash Deep · Akash Deep
Metal–Organic Frameworks assembled from tetraphosphonic ligands and lanthanides Giovanni Valenti · Enrico Rampazzo · Sagar Kesarkar · Damiano Genovese · Andrea Fiorani · Alessandra Zanut · Francesco Palomba · Massimo Marcaccio · Francesco Paolucci · Luca Prodi · Luca Prodi
Recent progress on the development of glutathione (GSH) selective fluorescent and colorimetric probes Riccardo Peloso · Ernesto Carmona · Ernesto Carmona
Transition metal complexes as photosensitisers in one- and two-photon photodynamic therapy Gilles Lemercier · Mickaël Four · Sylviane Chevreux · Sylviane Chevreux
Manganese monoxide-based materials for advanced batteries Nikita V. Shvydkiy · Dmitry S. Perekalin · Dmitry S. Perekalin
Potential of metal–organic frameworks for adsorptive separation of industrially and environmentally relevant liquid mixtures D Manrique-Juarez Maria · Rat Sylvain · Salmon Lionel · Molnar Gabor · M Quintero Carlos · Nicu Liviu · J Shepherd Helena · Bousseksou Azzedine · Bousseksou Azzedine
Luminescent cyclometalated-pentafluorophenyl Pt II , Pt IV and heteropolynuclear complexes Songyi Lee · Jun Li · Xin Zhou · Jun Yin · Juyoung Yoon · Juyoung Yoon
Design of photoanode-based dye-sensitized photoelectrochemical cells assembling with transition metal complexes for visible light-induced water splitting Zheng Yin · Shuang Wan · Jian Yang · Mohamedally Kurmoo · Ming-Hua Zeng · Ming-Hua Zeng · Ming-Hua Zeng
Copper active site in polysaccharide monooxygenases Litian Chen · Xiaotian Guo · Wenjie Lu · Ming Chen · Qing Li · Huaiguo Xue · Huan Pang · Huan Pang
Polyhalide-bonded metal complexes: Structural diversity in an eclectic class of compounds Soumya Mukherjee · Aamod V. Desai · Sujit K. Ghosh · Sujit K. Ghosh · Sujit K. Ghosh
Metal-organic frameworks for highly efficient heterogeneous Fenton-like catalysis Jesús R. Berenguer · Elena Lalinde · M. Teresa Moreno · M. Teresa Moreno
The role of cations in second-order nonlinear optical materials based on π-conjugated [BO 3 ] 3− groups Van V. Vu · Son Tung Ngo · Son Tung Ngo
Compounds formed by Mannich reaction of a coordinated amine with an α-methylene nitro compound and formaldehyde – Syntheses and structures I Nandasiri Manjula · R Jambovane Sachin · McGrail B. Peter · T Schaef Herbert · K Nune Satish. · K Nune Satish.
Amphoteric reactivity of metal–oxygen complexes in oxidation reactions M Sears Jeremiah · J Boyle Timothy · J Boyle Timothy
Compounds with carboxy-substituted ligands formed by Mannich reactions of a coordinated amine with diethyl malonate and formaldehyde – Syntheses and structures Chloë Jane Johnson · Martin Albrecht · Martin Albrecht
Charge and spin coupling in copper compounds with hemilabile noninnocent ligands – Ambivalence in three dimensions Kowalski Konrad · Kowalski Konrad
Roles of thiolate ligands in the synthesis, properties and catalytic application of gold nanoclusters Arun Kumar Bar · Pankaj Kalita · Mukesh Kumar Singh · Gopalan Rajaraman · Vadapalli Chandrasekhar · Vadapalli Chandrasekhar · Vadapalli Chandrasekhar
Luminescent Ni(0) complexes Aresta Michele · Aresta Michele
Oxyheme valence bond structures and the oxyheme + NO reaction Borner Richard · Kowerko Danny · Miserachs Helena Guiset · F Schaffer Michelle · K O Sigel Roland · K O Sigel Roland
Cu and Zn coordination to amyloid peptides: From fascinating chemistry to debated pathological relevance Stijn Boodts · Eduard Fron · Johan Hofkens · Wim Dehaen · Wim Dehaen
Copper imbalance in Alzheimers disease: Overview of the exchangeable copper component in plasma and the intriguing role albumin plays Martin A. Bennett · Martin A. Bennett · Suresh K. Bhargava · Nedaossadat Mirzadeh · Steven H. Privér · Steven H. Privér
Energy materials based on metal Schiff base complexes Sabine Malzkuhn · Oliver S. Wenger · Oliver S. Wenger
Electrostatic interactions within mixed-valent compounds Colm Healy · Wolfgang Schmitt · Wolfgang Schmitt
Zn 2+ detection by MRI using Ln 3+ -based complexes: The central role of coordination chemistry Elena Atrián-Blasco · Paulina Gonzalez · Alice Santoro · Bruno Alies · Peter Faller · Christelle Hureau · Christelle Hureau
Metal-organic solids derived from arylphosphonic acids Mariacristina Siotto · Rosanna Squitti · Rosanna Squitti
Optimization protocols and improved strategies for metal-organic frameworks for immobilizing enzymes: Current development and future challenges Alexander Hildebrandt · Dominique Miesel · Heinrich Lang · Heinrich Lang
Lanthanides: Schiff base complexes, applications in cancer diagnosis, therapy, and antibacterial activity Célia S. Bonnet · Célia S. Bonnet
Recent progress in the syntheses of mesoporous metal–organic framework materials Gundog Yucesan · Yunus Zorlu · Miriam Stricker · Jens Beckmann · Jens Beckmann
Recent advances in gold nanostructures based biosensing and bioimaging Jiandong Cui · Sizhu Ren · Baoting Sun · Shiru Jia · Shiru Jia
Titanium-based metal–organic frameworks for photocatalytic applications Kurashige Wataru · Niihori Yoshiki · Sharma Sachil · Negishi Yuichi · Negishi Yuichi
β-Substituted Zn II porphyrins as dyes for DSSC: A possible approach to photovoltaic windows Milan Balaz · Shambhavi Tannir · Krisztina Varga · Krisztina Varga
Critical overview on the structure and metabolism of human aldehyde oxidase and its role in pharmacokinetics Gui-Yuan Wu · Li-Jun Chen · Lin Xu · Xiao-Li Zhao · Hai-Bo Yang · Hai-Bo Yang
Metal–organic frameworks for heavy metal removal from water Mauro Perfetti · Mauro Perfetti
Elemental imaging using laser-induced breakdown spectroscopy: A new and promising approach for biological and medical applications Jianjun Zhu · Jianjun Zhu · Pei-Zhou Li · Wenhan Guo · Yanli Zhao · Ruqiang Zou · Ruqiang Zou
Flexibility in Metal–Organic Frameworks: A fundamental understanding Richard D. Harcourt · Richard D. Harcourt
Interactions gold/phosphorus dendrimers. Versatile ways to hybrid organic–metallic macromolecules Gabriele Di Carlo · Alessio Orbelli Biroli · Francesca Tessore · Stefano Caramori · Maddalena Pizzotti · Maddalena Pizzotti
Colorimetric metal ion sensors – A comprehensive review of the years 2011–2016 Benoit Busser · Benoit Busser · Samuel Moncayo · Jean-Luc Coll · Lucie Sancey · Vincent Motto-Ros · Vincent Motto-Ros
Rise of diselenides: Recent advances in the synthesis of heteroarylselenides Hong-Yu Guan · Hong-Yu Guan · Robert J. LeBlanc · Shu-Ya Xie · Yanfeng Yue · Yanfeng Yue
Optical limiting properties of (reduced) graphene oxide covalently functionalized by coordination complexes Yang Zhang · Ge Wang · Lu Yang · Fei Wang · Aihua Liu · Aihua Liu
Homo- and heterometallic polynuclear transition metal catalysts for alkane CH bonds oxidative functionalization: Recent advances Gellért Sipos · Reto Dorta · Reto Dorta
Construction of supramolecular hexagonal metallacycles via coordination-driven self-assembly: Structure, properties and application Okuda Jun · Okuda Jun
Low-coordinate mononuclear lanthanide complexes as molecular nanomagnets Anna Ivanova · Pavel Arsenyan · Pavel Arsenyan
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Metal–metal bonded compounds with uncommon low oxidation state Neil F. Curtis · Neil F. Curtis
Tridentate pyridine–pyrrolide chelate ligands: An under-appreciated ligand set with an immensely promising coordination chemistry Muniyandi Sankaralingam · Yong-Min Lee · Wonwoo Nam · Shunichi Fukuzumi · Shunichi Fukuzumi
Renaissance of the entatic state principle Neil F. Curtis · Neil F. Curtis
Coordination chemistry of tris(azolyl)phosphines Mei Pan · Kai Wu · Jian-Hua Zhang · Cheng-Yong Su · Cheng-Yong Su
Rare earth metal-containing ionic liquids Goeun Choi · Tae-Hyun Kim · Jae-Min Oh · Jin-Ho Choy · Jin-Ho Choy
Chemically diverse small molecule fluorescent chemosensors for copper ion Massimiliano Massi · Stefano Stagni · Mark I. Ogden · Mark I. Ogden
POP-type ligands: Variable coordination and hemilabile behaviour Sven Otto · Matthias Dorn · Christoph Förster · Matthias Bauer · Michael Seitz · Katja Heinze · Katja Heinze
Light controlled receptors for heavy metal ions Xiang Liu · Xiang Liu · Carolina Manzur · Néstor Novoa · Salvador Celedón · David Carrillo · Jean-René Hamon · Jean-René Hamon
Dinuclear N-heterocyclic carbene copper(I) complexes Timothy J. Zerk · Paul V. Bernhardt · Paul V. Bernhardt
The chemistry of the carbon-transition metal double and triple bond: Annual survey covering the year 2016 Liang Zhao · Xu Jing · Xuezhao Li · Xiangyang Guo · Le Zeng · Cheng He · Chunying Duan · Chunying Duan
Recent progress on fluorescent probes Jian-Ke Sun · Xiao-Dong Yang · Guo-Yu Yang · Jie Zhang · Jie Zhang
Coordination chemistry of neutral mono-oxide, sulfide and selenide bis(diphenylphosphino)amine (DPPA)-based ligands and their N-substituted/functionalized derivatives☆ W Herndon James · W Herndon James
Recent advances in the chemistry of transition metal–silicon/germanium triple-bonded complexes Abdurrahman Turksoy · Deniz Yildiz · Engin U. Akkaya · Engin U. Akkaya
Regulation of metal–metal interactions and chromic phenomena of multi-decker platinum complexes having π-systems Zhao Shu-Na · Song Xue-Zhi · Song Shuyan · Zhang Hongjie · Zhang Hongjie
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Design and applications of molecular probes containing porphyrin derivatives Hai-Ying Wang · Long Cui · Jia-Ze Xie · Chanel F. Leong · Deanna M. D’Alessandro · Jing-Lin Zuo · Jing-Lin Zuo
Nanomaterials for removal of toxic elements from water Ma Dik-Lung · Wang Modi · Liu Chenfu · Miao Xiangmin · Kang Tian-Shu · Leung Chung-Hang · Leung Chung-Hang
Recent progress in the development of organic dye based near-infrared fluorescence probes for metal ions Karolina Wieszczycka · Karolina Wieszczycka · Katarzyna Staszak · Katarzyna Staszak · Katarzyna Staszak
Strategies to design conjugated polymer based materials for biological sensing and imaging Safacan Kolemen · Engin U. Akkaya · Engin U. Akkaya
Near-infrared fluorescent probes for peptidases Liu Wukun · Gust Ronald · Gust Ronald
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Emerging nanomaterials with advanced drug delivery functions; focused on methotrexate delivery Rebecca E. Adams · Tod A. Grusenmeyer · Audrey L. Griffith · Russell H. Schmehl · Russell H. Schmehl
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Transient absorption and time-resolved vibrational studies of photophysical and photochemical processes in DNA-intercalating polypyridyl metal complexes or cationic porphyrins Michael G. Gardiner · Curtis C. Ho · Curtis C. Ho
Coordination determined chemo- and enantioselectivities in asymmetric hydrogenation of multi-functionalized ketones Kulesza Dagmara · Bolek Paulina · J J Bos Adrie · Zych Eugeniusz · Zych Eugeniusz
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Spin crossover in homoleptic Fe(II) imidazolylimine complexes Haibin Gu · Shengdong Mu · Guirong Qiu · Xiong Liu · Li Zhang · Yanfei Yuan · Didier Astruc · Didier Astruc
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Photoexcited radical anion super-reductants for solar fuels catalysis Biswanath Das · James N. McPherson · Stephen B. Colbran · Stephen B. Colbran
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Multicomponent halide templating: The effect of structure-directing agents on the assembly of molecular and extended coordination compounds Beibei Shan · Yuhan Pu · Yingfan Chen · Mengling Liao · Ming Li · Ming Li
Recent developments in the chemistry of ferrocenyl secondary natural product conjugates Cristiano S. Mota · Catarina Coelho · Silke Leimkühler · Enrico Garattini · Mineko Terao · Teresa Santos-Silva · Maria João Romão · Maria João Romão
The mechanism of tumour cell death by metal-based anticancer drugs is not only a matter of DNA interactions D Kennedy John · D Kennedy John
Non-viral gene therapy using multifunctional nanoparticles: Status, challenges, and opportunities Jianping Shi · Min Hong · Zhepeng Zhang · Qingqing Ji · Yanfeng Zhang · Yanfeng Zhang
Pore surface engineering of metal–organic frameworks for heterogeneous catalysis Muhammad Imran · Wagma Ayub · Ian S. Butler · Zia-ur-Rehman · Zia-ur-Rehman
Metal-organic frameworks for direct electrochemical applications Anurag Gautam · Pragya Komal · Pragya Komal
Molecular conductors of BEDT-TTF with tris(oxalato)metallate anions Huacheng He · Lida Hashemi · Mao-Lin Hu · Ali Morsali · Ali Morsali
Ruthenium coordination compounds of biological and biomedical significance. DNA binding agents Ming-jie Yin · Bobo Gu · Quan-Fu An · Chengbin Yang · Yong Liang Guan · Ken-Tye Yong · Ken-Tye Yong
Transition metal complexes of the naked pnictide elements Yuehong Wen · Jie Zhang · Qiang Xu · Qiang Xu · Xintao Wu · Qi-Long Zhu · Qi-Long Zhu
Organ damage by toxic metals is critically determined by the bloodstream Yuxia Xu · Qing Li · Huaiguo Xue · Huan Pang · Huan Pang
Polymers synthesized via catalyst-transfer polymerization and their applications Lee Martin · Lee Martin
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Trinuclear copper complexes as biological mimics: Ligand designs and reactivities Kenton H. Whitmire · Kenton H. Whitmire
Electrochemical measurements of molecular compounds in homogeneous solution under photoirradiation Matthew A. Gibson · Jürgen Gailer · Jürgen Gailer
The chemistry of aluminum(I) with β-diketiminate ligands and pentamethylcyclopentadienyl-substituents: Synthesis, reactivity and applications J. Patrick Lutz · Matthew D. Hannigan · Anne J. McNeil · Anne J. McNeil
Metal hexacyanoferrates-based adsorbents for cesium removal Dušan P. Malenov · Goran V. Janjić · Vesna B. Medaković · Michael B. Hall · Snežana D. Zarić · Snežana D. Zarić
DABCO molecule in the M2(C8H4O4)2·C6H12N2 (M = Co, Ni, Cu, Zn) metal-organic frameworks Elena Salvadeo · Lionel Dubois · Jean-Marc Latour · Jean-Marc Latour
Asymmetric catalysis with octahedral stereogenic-at-metal complexes featuring chiral ligands Arisa Fukatsu · Mio Kondo · Shigeyuki Masaoka · Shigeyuki Masaoka
Second-order nonlinear optical crystals with mixed anions Yashuai Liu · Jia Li · Xiaoli Ma · Zhi Yang · Zhi Yang · Herbert W. Roesky · Herbert W. Roesky
Beyond pristine metal-organic frameworks: Preparation and application of nanostructured, nanosized, and analogous MOFs Jianlong Wang · Shuting Zhuang · Yong Liu · Yong Liu
Transition metal-catalyzed carboxylation of unsaturated substrates with CO2 Svetlana G. Kozlova · Svetlana G. Kozlova · I.V. Mirzaeva · I.V. Mirzaeva · M.R. Ryzhikov · M.R. Ryzhikov · M.R. Ryzhikov
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Detection and identification of solids, surfaces, and solutions of uranium using vibrational spectroscopy Yu Pan · Sheng-Ping Guo · Bin-Wen Liu · Huai-Guo Xue · Guo-Cong Guo · Guo-Cong Guo
Recent progress in synthesis and characterization of metal chalcone complexes and their potential as bioactive agents Nazmul Abedin Khan · Zubair Hasan · Sung Hwa Jhung · Sung Hwa Jhung
Fluoroquinolones metal complexation and its environmental impacts Si-Shun Yan · Qiang Fu · Li-Li Liao · Guo-Quan Sun · Jian-Heng Ye · Li Gong · Yin-Zi Bo-Xue · Da-Gang Yu · Da-Gang Yu
Coordination chemistry for energy Rathinam Balamurugan · Jui-Hsiang Liu · Bo-Tau Liu · Bo-Tau Liu
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Platinum drugs, copper transporters and copper chelators Agnieszka Cuprys · Rama Pulicharla · Satinder Kaur Brar · Patrick Drogui · Mausam Verma · Rao Y. Surampalli · Rao Y. Surampalli
Recent development of fiber-optic chemical sensors and biosensors: Mechanisms, materials, micro/nano-fabrications and applications Bingjun Zhu · Dingguo Xia · Ruqiang Zou · Ruqiang Zou
The role of the counter-ion in metal-organic frameworks chemistry and applications Fazalurahman Kuttassery · Siby Mathew · Sebastian Nybin Remello · Arun Thomas · Keito Sano · Yutaka Ohsaki · Yu Nabetani · Hiroshi Tachibana · Haruo Inoue · Haruo Inoue
The use of [2-C 6 R 4 PPh 2 ] − (R = H, F) and related carbanions as building blocks in coordination chemistry Frank T. Edelmann · Frank T. Edelmann
N-heterocyclic carbene supported halosilylenes: New frontiers in an emerging field Bo Li · Hui-Tao Fan · Shuang-Quan Zang · Hai-Yang Li · Li-Ya Wang · Li-Ya Wang
Upconversion nanoprobes for biodetections Shunichi Fukuzumi · Shunichi Fukuzumi · Yong-Min Lee · Wonwoo Nam · Wonwoo Nam
A structural survey of the binary transition metal phosphides and arsenides of the d-block elements Max Attwood · Scott S. Turner · Scott S. Turner
Two-dimensional infrared spectroscopy of coordination complexes: From solvent dynamics to photocatalysis Kang Wang · Dongdong Qi · Yuliang Li · Tianyu Wang · Huibiao Liu · Jianzhuang Jiang · Jianzhuang Jiang
Recent developments in redox-active olefin polymerization catalysts Jie Zhou · Zhonglin Cao · Nishtha Panwar · Rui Hu · Xiaomei Wang · Junle Qu · Swee Chuan Tjin · Gaixia Xu · Ken-Tye Yong · Ken-Tye Yong
Synthesis of silacyclobutanes and their catalytic transformations enabled by transition-metal complexes Anne-Marie Caminade · Anne-Marie Caminade · Armelle Ouali · Armelle Ouali · Régis Laurent · Régis Laurent · Cédric-Olivier Turrin · Cédric-Olivier Turrin · Jean-Pierre Majoral · Jean-Pierre Majoral · Jean-Pierre Majoral
Recent advances in the functional applications of conducting metallopolymers Beatriz Seoane · Sonia Castellanos · Alla Dikhtiarenko · Freek Kapteijn · Jorge Gascon · Jorge Gascon
Artificial photosynthesis: Catalytic water oxidation and CO2 reduction by dinuclear non-noble-metal molecular catalysts Sébastien Bontemps · Sébastien Bontemps
Metal-containing crystalline luminescent thermochromic materials Lydie Valade · Dominique de Caro · Christophe Faulmann · Kane Jacob · Kane Jacob
Photoluminescent, upconversion luminescent and nonlinear optical metal-organic frameworks: From fundamental photophysics to potential applications Qiu-Chao Mu · Qiu-Chao Mu · Jing Chen · Chungu Xia · Li-Wen Xu · Li-Wen Xu · Li-Wen Xu
Heteroleptic copper phenanthroline complexes in motion: From stand-alone devices to multi-component machinery Minh Tho Nguyen · Richard A. Jones · Bradley J. Holliday · Bradley J. Holliday
Chiral multifunctional molecules based on organometallic helicenes: Recent advances Jia-Wei Wang · Jia-Wei Wang · Di-Chang Zhong · Tong-Bu Lu · Tong-Bu Lu · Tong-Bu Lu
Metal complex strategies for photo-uncaging the small molecule bioregulators nitric oxide and carbon monoxide Tu N. Nguyen · Fatmah Mish Ebrahim · Kyriakos C. Stylianou · Kyriakos C. Stylianou
Photoactivated platinum-based anticancer drugs Yang Yang · Masayoshi Nishiura · Haobing Wang · Zhaomin Hou · Zhaomin Hou
A review on structure-performance relationship toward the optimal design of infrared nonlinear optical materials with balanced performances Abir Goswami · Michael Schmittel · Michael Schmittel
Strategies to improve metal organic frameworks photocatalysts performance for degradation of organic pollutants Jiangkun Ouyang · Jeanne Crassous · Jeanne Crassous
The chemistry of the carbon-transition metal double and triple bond: Annual survey covering the year 2017 Nirmala Muthukumaran · Kavitha Velappan · Kritika Gour · Ganesan Prabusankar · Ganesan Prabusankar
Pentafulvene complexes of group four metals: Versatile organometallic building blocks Peter C. Ford · Peter C. Ford
Ultrathin two-dimensional metal-organic framework nanosheets for functional electronic devices Kui Wu · Shilie Pan · Shilie Pan
Aluminum and gallium complexes as homogeneous catalysts for reduction/oxidation reactions Danni Jiang · Piao Xu · Han Wang · Guangming Zeng · Danlian Huang · Ming Chen · Cui Lai · Chen Zhang · Jia Wan · Wenjing Xue · Wenjing Xue
The coordinative flexibility of rigid phenanthroline-analogous di(NHC)-ligands James W. Herndon · James W. Herndon
Metal-catalyzed C H activation for polymer synthesis and functionalization Rüdiger Beckhaus · Rüdiger Beckhaus
Copolymerization of carbon dioxide and epoxides by metal coordination complexes Weiwei Zhao · Jiali Peng · Weikang Wang · Shujuan Liu · Qiang Zhao · Wei Huang · Wei Huang · Wei Huang
Alternative route to bypass the bottle-neck of water oxidation: Two-electron oxidation of water catalyzed by earth-abundant metalloporphyrins Christian R. Goldsmith · Christian R. Goldsmith
Metal-organic frameworks and their derivatives as bifunctional electrocatalysts Doris Kunz · Kim S. Flaig · Kim S. Flaig
Aluminum metal–organic frameworks for sorption in solution: A review Qiang Xu · Qiang Xu
Probable ideal size of Ln3+-based upconversion nanoparticles for single and multimodal imaging Christopher M. Kozak · Kenson Ambrose · Timothy S. Anderson · Timothy S. Anderson
Silver nanoparticle fate in mammals: Bridging in vitro and in vivo studies Xiang Liu · Didier Astruc · Didier Astruc
Developments in compartmentalized bimetallic transition metal ethylene polymerization catalysts Yanyan Wang · Donald J. Darensbourg · Donald J. Darensbourg
Atomically precise copper nanoclusters and their applications Diego Rota Martir · Eli Zysman-Colman · Eli Zysman-Colman
Recent advances in the use of photochromic dyes for photocontrol in biomedicine Edgar Del Carpio · Edgar Del Carpio · Lino Hernández · Lino Hernández · Carlos Ciangherotti · Valentina Villalobos Coa · Lissette Jiménez · Vito Lubes · Giuseppe Lubes · Giuseppe Lubes
Magnetism in one-dimensional metal–nitronyl nitroxide radical system Shruti Mendiratta · Muhammad Usman · Kuang-Lieh Lu · Kuang-Lieh Lu
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Anion coordination chemistry: From recognition to supramolecular assembly Andrea Erxleben · Andrea Erxleben
Recent advances about metal–organic frameworks in the removal of pollutants from wastewater Xixi Meng · Wei Shi · Peng Cheng · Peng Cheng
Luminescent rhenium(I), ruthenium(II), and iridium(III) polypyridine complexes containing a poly(ethylene glycol) pendant or bioorthogonal reaction group as biological probes and photocytotoxic agents Thach N. Tu · My V. Nguyen · Ha L. Nguyen · Ha L. Nguyen · Brian Yuliarto · Kyle E. Cordova · Kyle E. Cordova · Selçuk Demir · Selçuk Demir
Electro and photoreduction of CO 2 driven by manganese-carbonyl molecular catalysts Jie Zhao · Dong Yang · Xiao-Juan Yang · Biao Wu · Biao Wu
Recent advances in luminescent lanthanide based Single-Molecule Magnets Marianne Marchioni · Pierre-Henri Jouneau · Mireille Chevallet · Isabelle Michaud-Soret · Aurélien Deniaud · Aurélien Deniaud
Recent advances in copper complexes for electrical/light energy conversion Jianwei Ren · Jianwei Ren · Mpho Ledwaba · Mpho Ledwaba · Nicholas M. Musyoka · Henrietta W. Langmi · Mkhulu Mathe · Shijun Liao · Wan Pang · Wan Pang
Synthetic approaches for the incorporation of free amine functionalities in porous coordination polymers for enhanced CO2 sorption Xiaohui Wang · Xiaoyong Wang · Zijian Guo · Zijian Guo
Structure relationships between bis-monodentate ligands and coordination driven self-assemblies Laura M. Kiefer · Kevin J. Kubarych · Kevin J. Kubarych
Thermal and photocatalytic production of hydrogen with earth-abundant metal complexes Bontemps Sebastien · Bontemps Sebastien
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Ultrafast photophysics and photochemistry of iron hexacyanides in solution: Infrared to X-ray spectroscopic studies Na Li · Rui Feng · Jian Zhu · Ze Chang · Xian-He Bu · Xian-He Bu
Conformation versatility of ligands in coordination polymers: From structural diversity to properties and applications Yurong Liu · Sze-Chun Yiu · Sze-Chun Yiu · Cheuk-Lam Ho · Wai-Yeung Wong · Wai-Yeung Wong · Wai-Yeung Wong
Carbon dioxide-based functional polycarbonates: Metal catalyzed copolymerization of CO 2 and epoxides Subhadeep Saha · Irene Regeni · Guido H. Clever · Guido H. Clever
Coordination polymers and metal-organic frameworks built up with poly(tetrazolate) ligands Charra Valentine · de Fremont Pierre · Braunstein Pierre · Braunstein Pierre
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Vanadium: History, chemistry, interactions with α-amino acids and potential therapeutic applications Juan Chen · Wesley R. Browne · Wesley R. Browne
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Supramolecular iridium(III) assemblies Kacper Pilarczyk · Ewelina Wlaźlak · Ewelina Wlaźlak · Dawid Przyczyna · Andrzej Blachecki · Agnieszka Podborska · Vasileios Anathasiou · Zoran Konkoli · Konrad Szaciłowski · Konrad Szaciłowski
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Current advances on ruthenium(II) N-heterocyclic carbenes in hydrogenation reactions Ru Zhou · Zhou Yang · Jinzhang Xu · Guozhong Cao · Guozhong Cao
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Rational design of phosphorescent iridium(III) complexes for emission color tunability and their applications in OLEDs Monica Pica · Anna Donnadio · Anna Donnadio
Metal–organic framework-derived porous materials for catalysis David C. Grills · Mehmed Z. Ertem · Meaghan McKinnon · Ken T. Ngo · Jonathan Rochford · Jonathan Rochford
Sterically induced distortions of nickel(II) porphyrins – Comprehensive investigation by DFT calculations and resonance Raman spectroscopy Daniela A. Hey · Robert M. Reich · Walter Baratta · Fritz E. Kühn · Fritz E. Kühn
Input of P, N-(phosphanyl, amino)-ferrocene hybrid derivatives in late transition metals catalysis S M Rodrigues Sofia · S M Ribeiro David · X Soares Jose · L C Passos Marieta · L M Santos Joao · L M Santos Joao
Organic/inorganic nanohybrids formed using electrospun polymer nanofibers as nanoreactors Horvath Raphael · S Huff Gregory · C Gordon Keith · W George Michael · W George Michael
Biological applications of Ru(II) polypyridyl complexes Shan Wang · Liyan Chen · Paramesh Jangili · Amit Sharma · Wei Li · Ji-Ting Hou · Caiqin Qin · Juyoung Yoon · Jong Seung Kim · Jong Seung Kim
Designed fabrication of biomimetic metal–organic frameworks for catalytic applications Tian-Yi Li · Tian-Yi Li · Jing Wu · Zheng-Guang Wu · You-Xuan Zheng · Jing-Lin Zuo · Yi Pan · Yi Pan
Recent advances in ultraviolet and deep-ultraviolet second-order nonlinear optical crystals Yu-Zhen Chen · Yu-Zhen Chen · Rui Zhang · Long Jiao · Hai-Long Jiang · Hai-Long Jiang
Carboxylate covalently modified polyoxometalates: From synthesis, structural diversity to applications Julian Schindler · Julian Schindler · Stephan Kupfer · Aoife A. Ryan · Keith J. Flanagan · Mathias O. Senge · Benjamin Dietzek · Benjamin Dietzek · Benjamin Dietzek
Molecules, semiconductors, light and information: Towards future sensing and computing paradigms Mariusz Mital · Zyta Ziora · Zyta Ziora
Harnessing ruthenium(II) as photodynamic agents: Encouraging advances in cancer therapy Kai Chen · Chuan-De Wu · Chuan-De Wu
Metal-involved theranostics: An emerging strategy for fighting Alzheimers disease Chao Wu · Gang Yang · Mark G. Humphrey · Chi Zhang · Chi Zhang
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Lanthanides and actinides: Annual survey of their organometallic chemistry covering the year 2017 Huai-Song Wang · Huai-Song Wang
Gold nanostructures with near-infrared plasmonic resonance: Synthesis and surface functionalization David E. Ryan · David J. Cardin · František Hartl · František Hartl
Theoretical NMR spectroscopy of N-heterocyclic carbenes and their metal complexes Yat-Ming So · Wa-Hung Leung · Wa-Hung Leung
Recent advance in MXenes: A promising 2D material for catalysis, sensor and chemical adsorption Libor Dostál · Libor Dostál
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Corroles as triplet photosensitizers Joseph M. Keca · Joseph M. Keca · Gang Zheng · Gang Zheng
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Transition metal catalyzed element–element′ additions to alkynes Jian Cao · Zhan-Jiang Zheng · Zheng Xu · Li-Wen Xu · Li-Wen Xu · Li-Wen Xu
Ironing out the photochemical and spin-crossover behavior of Fe(II) coordination compounds with computational chemistry Li Zhao · Xiong Liu · Li Zhang · Guirong Qiu · Didier Astruc · Haibin Gu · Haibin Gu
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Organic–inorganic hybrid nanoflowers: A novel host platform for immobilizing biomolecules Chao Shi · Xiang-Bin Han · Wen Zhang · Wen Zhang
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Advances in beryllium coordination chemistry Shuai Shao · Venugopal Rajendiran · Venugopal Rajendiran · Jonathan F. Lovell · Jonathan F. Lovell
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Structural phase transition-associated dielectric transition and ferroelectricity in coordination compounds Javier Cepeda · Garikoitz Beobide · Oscar Castillo · Antonio Luque · Sonia Pérez-Yáñez · Sonia Pérez-Yáñez
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Optical trapping-assisted SERS platform for chemical and biosensing applications: Design perspectives Tomonori Hoshi · Nagao Kobayashi · Nagao Kobayashi
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Coordination chemistry and application of mono- and oligopyridine-based macrocycles C Cammarota Ryan · J Clouston Laura · C Lu Connie · C Lu Connie
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Design principles in frustrated Lewis pair catalysis for the functionalization of carbon dioxide and heterocycles Guoyong Fang · Guoyong Fang · Lina Xu · Yan-Qiang Cao · Aidong Li · Aidong Li
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DFT challenge of intermetallic interactions: From metallophilicity and metallaromaticity to sextuple bonding Jonathan R. Dilworth · Jonathan R. Dilworth
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Coordination and catalytic chemistry of phosphinoferrocene carboxamides Kowsalya Vellingiri · Ligy Philip · Ki-Hyun Kim · Ki-Hyun Kim
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