Journal of Power Sources
Research Hotspot & Research Scope

Research Hotspot & Research Scope
Journal of Power Sources

Journal of Power Sources - DOI: 10.1016/J.JPOWSOUR.2019.226840
Superior cycling life of Li–S batteries with high sulfur loading enabled by a bifunctional layered-MoO3 cathode

Ruihan Zhang · Maochun Wu · X. Z. Fan · Haoran Jiang · Tianshou Zhao ·

Materials Science
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Journal of Power Sources - DOI: 10.1016/J.JPOWSOUR.2019.05.055
Bio-inspired poly(3,4-ethylenedioxythiophene): Poly(styrene sulfonate)-sulfur@polyacrylonitrile electrospun nanofibers for lithium-sulfur batteries

Avinash Raulo · Sumana Bandyopadhyay · Salahuddin Ahamad · Amit Gupta · Rajiv K. Srivastava · Petr Formanek · Bhanu Nandan ·

Materials Science
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Journal of Power Sources - DOI: 10.1016/J.JPOWSOUR.2019.04.086
Red phosphorus filled biomass carbon as high-capacity and long-life anode for sodium-ion batteries

Weifeng Tian · Li Wang · Kaifu Huo · Xiangming He ·

Materials Science
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Journal of Power Sources - DOI: 10.1016/J.JPOWSOUR.2019.03.115
Analysis of electrolyte imbibition through lithium-ion battery electrodes

Ali Davoodabadi · Jianlin Li · Yongfeng Liang · David L. Wood · Timothy J. Singler · Congrui Jin ·

Materials Science
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Journal of Power Sources - DOI: 10.1016/J.JPOWSOUR.2019.05.034
Properties of reduced graphene oxide for Mg-air battery

Jingling Ma · Conghui Qin · Yaqiong Li · Fengzhang Ren · Yong Liu · Guangxin Wang ·

Materials Science
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Journal of Power Sources - DOI: 10.1016/J.JPOWSOUR.2018.10.089
Sc-substituted Nasicon solid electrolyte for an all-solid-state NaxCoO2/Nasicon/Na sodium model battery with stable electrochemical performance

P. Kehne · Conrad Guhl · Qianli Ma · Frank Tietz · Lambert Alff · René Hausbrand · Philipp Komissinskiy ·

Materials Science
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Journal of Power Sources - DOI: 10.1016/J.JPOWSOUR.2019.03.048
Graphene and reduced graphene oxide based microporous layers for high-performance proton-exchange membrane fuel cells under varied humidity operation

M. Jeanette Leeuwner · Arghya Patra · David P. Wilkinson · Előd L. Gyenge ·

Materials Science
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Journal of Power Sources - DOI: 10.1016/j.jpowsour.2019.03.052
Iron-streptomycin derived catalyst for efficient oxygen reduction reaction in ceramic microbial fuel cells operating with urine

Maria Jose Salar Garcia · Carlo Santoro · Mounika Kodali · Alexey Serov · Kateryna Artyushkova · Plamen Atanassov · Ioannis Ieropoulos ·

Chemistry Medicine
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Journal of Power Sources - DOI: 10.1016/J.JPOWSOUR.2019.03.040
Thick polyfluorene-based polyelectrolytes realized by regulation of conjugated backbone as cathode interface layers for efficient polymer solar cells

Feiyan Wu · Xiufen Jin · Bin Huang · Hui Lei · Yongkang An · Jihui Han · Shaorong Huang · Lie Chen · Yiwang Chen ·

Materials Science
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Research Scope

batteries battery cells fuel performance carbon cell lithium lithium-ion electrolyte electrochemical cathode oxide solid electrode anode ion energy supercapacitors efficient membrane solar oxygen electrodes polymer high-performance composite material flow porous storage hybrid perovskite reaction materials supercapacitor anodes redox graphene Li-ion metal electrolytes power layer enhanced aqueous system synthesis water method catalyst reduction derived nanoparticles flexible novel temperature effect capacity evolution proton exchange rechargeable voltage properties Li analysis vanadium microbial stable hydrogen applications layered hierarchical transport Effect surface stability asymmetric cathodes solid-state electrocatalyst strategy density modeling nanosheets degradation organic design alkaline cobalt graphite silicon performances efficiency cycle superior bifunctional process rate 3D cycling nanofibers current sulfur low model reduced liquid sodium-ion doping advanced direct application ionic nickel charge poly effects fabrication situ gas doped nanotube diffusion film sodium framework Electrochemical catalysts network oxidation thermal induced behavior phase nitrogen-doped coating life modified layers interfacial structure N-doped electric capacitors all-solid-state loading alloy interface TiO2 effective acid enabled mesoporous electrolysis Facile capacitor amorphous mechanical modification improved Ni charging double anchored impedance thermoelectric X-ray arrays Enhancing methanol Highly Synthesis embedded conductive nanotubes membranes Na-ion Effects production deposition SnO2 fiber splitting heat growth metal-organic operating characterization composites Si supported additive negative mechanism electron Improved capability electrocatalysts aging In-situ co-doped excellent films zinc conversion conductivity investigation hydroxide management Novel carbon-based vehicle oxides conducting zinc-air Ni-rich commercial prepared high-capacity carbonate approach generation review photoelectrochemical in-situ robust state air binder quantum hollow Thermal cloth iron Investigation manganese control electronic prediction discharge activated gel separator stack Cu positive separators Enhanced

In order to achieve the high capacities of carbonaceous oxygen diffusion electrodes for aprotic lithium–oxygen batteries (Li–O2 batteries), most efforts currently focus on the design of rational porous architectures.

Surface carboxyl groups enhance the capacities of carbonaceous oxygen electrodes for aprotic lithium−oxygen batteries: A direct observation on binder-free electrodes [10.1016/J.CCLET.2019.07.011]


Figure 1 Schematical illustration of the organic batteries operated at -70 oC.

Organic Batteries Operated at -70 oc [10.1149/ma2019-04/1/47]


On this basis, a long-term equivalent service behavior study was conducted to evaluate the irradiation stability of the CsPbBr3 radioluminescent layer and predict the service life of this type of nuclear battery.

CsPbBr3 Quantum Dot Films with High Luminescence Efficiency and Irradiation Stability for Radioluminescent Nuclear Battery Application. [10.1021/acsami.9b02425]


There exist many battery balancing schemes which are broadly grouped into either passive or active schemes.

Review of Battery Cell Balancing Methodologies for Optimizing Battery Pack Performance in Electric Vehicles [10.1109/ACCESS.2019.2940090]


Conclusion: This study evidences that silence of lncRNA UCA1 inhibits hemangioma cells growth, migration and invasion possibly via its regulation on miR‐200c expression and the activation of mTOR, AMPK and Wnt/&bgr;‐catenin signaling pathways.

Silence of long non‐coding RNA UCA1 inhibits hemangioma cells growth, migration and invasion by up‐regulation of miR‐200c [10.1016/j.lfs.2019.03.038]


238Background: Treatment resistance is associated with tumor cells molecular plasticity.

Cell plasticity associated to taxane-resistance in preclinical cell models and in circulating tumor cells from metastatic castration-resistant prostate cancer patients. [10.1200/JCO.2019.37.7_SUPPL.238]

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Journal of Power Sources
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Journal of Power Sources | Academic Accelerator - About the Journal

About

Journal of Power Sources is the journal for researchers and technologists interested in all aspects of the science, technology and applications of sources of electrochemical power. Journal of Power Sources publishes original research and reviews about the science and applications of primary and secondary batteries, fuel cells, supercapacitors and photo-electrochemical cells. Topics considered include the research, development and applications of nanomaterials and novel componentry for these devices. Examples of applications of these electrochemical power sources include: • Portable electronics • Electric and Hybrid Electric Vehicles • Uninterruptible Power Supply (UPS) systems • Storage of renewable energy • Satellites and deep space probes • Boats and ships, drones and aircrafts • Wearable energy storage systems The Journal of Power Sources is a peer-reviewed scientific journal covering all aspects of electrochemical energy conversion (like fuel cells, batteries, supercapacitors, and photo-electrochemical cells). The current editors-in-chief is Stefano Passerini, According to the Journal Citation Reports, the journal has a 2017 impact factor of 6.945 and a 5-year impact factor of 6.496.

ISSN

0378-7753

ISSN

The ISSN of Journal of Power Sources is 0378-7753 . 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 Journal of Power Sources 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

Journal of Power Sources is published by Elsevier .

Publication Frequency

Quarterly

Publication Frequency

Journal of Power Sources publishes reports Quarterly .

Coverage

1976-2021

Coverage

The Publication History of Journal of Power Sources covers 1976-2021 .

Open Access

NO

Open Access

Publication Fee

Publication Fee

Language

Multiple languages

Language

The language of Journal of Power Sources is Multiple languages .

Country/Region

Netherlands

Country/Region

The publisher of Journal of Power Sources is Elsevier , which locates in Netherlands .