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Novel Anode sentence examples within lithium ion battery
This study reports one dimensional lithium hexaoxotungstate (Li6WO6), with a diameter in the range of 200–500 nm, as a novel anode material for lithium-ion batteries.
This study reports one dimensional lithium hexaoxotungstate (Li6WO6), with a diameter in the range of 200–500 nm, as a novel anode material for lithium-ion batteries.
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We report a novel anode consisting of detonation nanodiamond, SiOx nanoparticals and carbon nanosheets, to achieve high performance lithium-ion batteries.
We report a novel anode consisting of detonation nanodiamond, SiOx nanoparticals and carbon nanosheets, to achieve high performance lithium-ion batteries.
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Novel Anode sentence examples within high specific capacity
Hard carbon materials are employed as a novel anode material in lithium ion batteries (LIBs) due to its large specific surface area, high specific capacity and stable cycle performance.
Hard carbon materials are employed as a novel anode material in lithium ion batteries (LIBs) due to its large specific surface area, high specific capacity and stable cycle performance.
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This work paves the ideas for the design of novel anode materials with high specific capacity, good cycling stability and outstanding rate capability for PIBs.
This work paves the ideas for the design of novel anode materials with high specific capacity, good cycling stability and outstanding rate capability for PIBs.
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Novel Anode sentence examples within Develop Novel Anode
This study proposes an effective strategy to develop novel anodes with excellent cycling and rate properties for SIBs by encapsulating active nanoparticles into carbon matrix.
This study proposes an effective strategy to develop novel anodes with excellent cycling and rate properties for SIBs by encapsulating active nanoparticles into carbon matrix.
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It is urgent to develop novel anode materials with high energy density and facile synthetic procedures, since the development of commercial lithium ions batteries (LIBs) is limited by the unsatisfied capacity of graphite.
It is urgent to develop novel anode materials with high energy density and facile synthetic procedures, since the development of commercial lithium ions batteries (LIBs) is limited by the unsatisfied capacity of graphite.
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Novel Anode sentence examples within Explore Novel Anode
The single-phase binary nickel vanadate Ni2V2O7 was successfully synthesized by a simple solid-state method to explore novel anode materials for lithium-ion batteries.
The single-phase binary nickel vanadate Ni2V2O7 was successfully synthesized by a simple solid-state method to explore novel anode materials for lithium-ion batteries.
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It is very important to explore novel anode materials alternative to graphite considering its poor safety and rate performance working at low temperature in lithium ion batteries.
It is very important to explore novel anode materials alternative to graphite considering its poor safety and rate performance working at low temperature in lithium ion batteries.
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Novel Anode sentence examples within Fabricate Novel Anode
It is important to design and fabricate novel anode materials with stable structure and high capacity for sodium ion batteries (SIBs).
It is important to design and fabricate novel anode materials with stable structure and high capacity for sodium ion batteries (SIBs).
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Herein, a simplified and economical method is developed to treat spent lithium-ion batteries (LIBs) by utilizing LiFePO4 cathode scraps as the raw precursors to fabricate novel anode material Fe2P2O7.
Herein, a simplified and economical method is developed to treat spent lithium-ion batteries (LIBs) by utilizing LiFePO4 cathode scraps as the raw precursors to fabricate novel anode material Fe2P2O7.
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Novel Anode sentence examples within Developing Novel Anode
Developing novel anode materials with highly efficient and earth-abundant for electrochemical energy storage are vitally paramount, but extremely challenging for the enhancement of alkali ions storage performance.
Developing novel anode materials with highly efficient and earth-abundant for electrochemical energy storage are vitally paramount, but extremely challenging for the enhancement of alkali ions storage performance.
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Novel Anode sentence examples within novel anode material
High-energy ball milling (HEBM) is used to synthesize zinc telluride (ZnTe) and amorphous C (ZnTe-C) nanocomposites as novel anode materials for sodium-ion batteries (SIBs).
High-energy ball milling (HEBM) is used to synthesize zinc telluride (ZnTe) and amorphous C (ZnTe-C) nanocomposites as novel anode materials for sodium-ion batteries (SIBs).
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The single-phase binary nickel vanadate Ni2V2O7 was successfully synthesized by a simple solid-state method to explore novel anode materials for lithium-ion batteries.
The single-phase binary nickel vanadate Ni2V2O7 was successfully synthesized by a simple solid-state method to explore novel anode materials for lithium-ion batteries.
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Novel Anode sentence examples within novel anode electrode
Novel Anode sentence examples within novel anode design
Furthermore, the carbon matrix structure in the electrode provides the conductive path for electrons, so no additional conductive agents are required in this novel anode design.
Furthermore, the carbon matrix structure in the electrode provides the conductive path for electrons, so no additional conductive agents are required in this novel anode design.
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Enhancing microbial electrocatalysis through novel anode design is essential to the efficient and stable operation of microbial fuel cells.
Enhancing microbial electrocatalysis through novel anode design is essential to the efficient and stable operation of microbial fuel cells.
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Novel Anode sentence examples within novel anode active
58O4-δ HEO nanocrystalline powder with high concentration of oxygen vacancies is successfully prepared by the method of solution combustion synthesis (SCS), and explored as a novel anode active material for LIBs.
58O4-δ HEO nanocrystalline powder with high concentration of oxygen vacancies is successfully prepared by the method of solution combustion synthesis (SCS), and explored as a novel anode active material for LIBs.
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10.1166/jnn.2021.19224
High-energy ball milling (HEBM) is used to synthesize zinc telluride (ZnTe) and amorphous C (ZnTe-C) nanocomposites as novel anode materials for sodium-ion batteries (SIBs).
High-energy ball milling (HEBM) is used to synthesize zinc telluride (ZnTe) and amorphous C (ZnTe-C) nanocomposites as novel anode materials for sodium-ion batteries (SIBs).
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10.1016/J.APSUSC.2021.149330
In this study, we propose a facile one-pot hydrothermal strategy to synthesize silicon-doped FeOOH@reduced graphene oxide (Si-FeOOH@rGO) composites, which integrate the advantages of hybridization and doping engineering as novel anodes for LIBs.
In this study, we propose a facile one-pot hydrothermal strategy to synthesize silicon-doped FeOOH@reduced graphene oxide (Si-FeOOH@rGO) composites, which integrate the advantages of hybridization and doping engineering as novel anodes for LIBs.
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10.1002/advs.202005031
Next‐generation Li‐ion batteries (LIBs) with higher energy density adopt some novel anode materials, which generally have the potential to exhibit higher capacity, superior rate performance as well as better cycling durability than conventional graphite anode, while on the other hand always suffer from larger active lithium loss (ALL) in the first several cycles.
Next‐generation Li‐ion batteries (LIBs) with higher energy density adopt some novel anode materials, which generally have the potential to exhibit higher capacity, superior rate performance as well as better cycling durability than conventional graphite anode, while on the other hand always suffer from larger active lithium loss (ALL) in the first several cycles.
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10.1007/s12274-021-3560-3
Herein, we design a core-shell structure consisting of an active bismuth sulfide core and a highly conductive sulfur-doped carbon shell (Bi2S3@SC) as a novel anode material for PIBs.
Herein, we design a core-shell structure consisting of an active bismuth sulfide core and a highly conductive sulfur-doped carbon shell (Bi2S3@SC) as a novel anode material for PIBs.
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10.1021/acsami.1c08396
Here, a novel anode material La0.
Here, a novel anode material La0.
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10.22104/IJHFC.2021.4765.1217
The main objective of the present study was to examine the effect of zinc foil modified with zinc oxide as a novel anode material to enhance power generation in a microfluidic MFC using oxalate as a substrate.
The main objective of the present study was to examine the effect of zinc foil modified with zinc oxide as a novel anode material to enhance power generation in a microfluidic MFC using oxalate as a substrate.
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10.2139/SSRN.3911176
As a novel anode material for sodium-ion batteries (SIBs), TiO2@HCNF retains a specific capacity of 193 mA h g-1 over 100 cycles at a current density of 0.
As a novel anode material for sodium-ion batteries (SIBs), TiO2@HCNF retains a specific capacity of 193 mA h g-1 over 100 cycles at a current density of 0.
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10.1039/D0TA10521J
Designing a novel anode material with suitable elemental composition and bonding structure for improving the limited capacity and poor lithium-ion conductivity of lithium-ion batteries (LIBs) is still challenging.
Designing a novel anode material with suitable elemental composition and bonding structure for improving the limited capacity and poor lithium-ion conductivity of lithium-ion batteries (LIBs) is still challenging.
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10.1002/adma.202100187
Hence, new insight into a novel anode with a surface-preferred (002) crystal plane is provided.
Hence, new insight into a novel anode with a surface-preferred (002) crystal plane is provided.
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10.1016/J.APCATB.2020.119553
Herein, a novel anode material capable of in-situ exsolution of nanoparticles, Sr1.
Herein, a novel anode material capable of in-situ exsolution of nanoparticles, Sr1.
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10.1016/J.CEJ.2021.129754
Herein, a novel anode material is constructed by wrapping SiOx into PVA derived carbon layer and N-doped carbon (NC) nanosheets derived from exfoliated chitin nanosheets.
Herein, a novel anode material is constructed by wrapping SiOx into PVA derived carbon layer and N-doped carbon (NC) nanosheets derived from exfoliated chitin nanosheets.
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10.1016/J.MATERRESBULL.2021.111211
In the present work, the sulfur and nitrogen dual-doped carbon nanofiber (S-NCNF) membrane was synthesized as a novel anode material of SICs.
In the present work, the sulfur and nitrogen dual-doped carbon nanofiber (S-NCNF) membrane was synthesized as a novel anode material of SICs.
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10.2166/wst.2021.211
The techniques of XRD, XPS, and VSM were used to characterize the elemental composition and the types of the reaction products in order to clarify the interaction between novel anode and phosphate ions.
The techniques of XRD, XPS, and VSM were used to characterize the elemental composition and the types of the reaction products in order to clarify the interaction between novel anode and phosphate ions.
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10.1007/s40820-020-00567-2
2 nm (FeVO UNSs) as a novel anode for rapid and reversible sodium-ion storage.
2 nm (FeVO UNSs) as a novel anode for rapid and reversible sodium-ion storage.
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10.1039/D1DT00275A
Helical carbon nanofibers (HCNFs) modified with Fe2O3 (Fe2O3/HCNFs) with a particle size of about 10-20 nm were first introduced for potential use as a novel anode material for lithium-ion batteries (LIBs).
Helical carbon nanofibers (HCNFs) modified with Fe2O3 (Fe2O3/HCNFs) with a particle size of about 10-20 nm were first introduced for potential use as a novel anode material for lithium-ion batteries (LIBs).
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10.1016/J.JIEC.2021.05.043
Herein, dual-carbon-confined hydrangea-like SiO clusters are developed via chemical vapor deposition (CVD) growth, followed by a spray drying approach as a novel anode material for high-performance and stable lithium ion batteries.
Herein, dual-carbon-confined hydrangea-like SiO clusters are developed via chemical vapor deposition (CVD) growth, followed by a spray drying approach as a novel anode material for high-performance and stable lithium ion batteries.
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10.1039/D0TA12141J
Herein, we explore a CuP2/C composite as a novel anode for PIBs, which delivers a high reversible capacity of >450 mA h g−1.
Herein, we explore a CuP2/C composite as a novel anode for PIBs, which delivers a high reversible capacity of >450 mA h g−1.
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10.1088/1755-1315/844/1/012002
The work provides new thinking for the application of the novel anode material of LICs.
The work provides new thinking for the application of the novel anode material of LICs.
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10.30501/ACP.2021.289093.1064
The present study aims to introduce Niobium pentoxide-Titanium nanotube (Nb2O5-TNTs) composite as a novel anode material synthesized through hydrothermal method.
The present study aims to introduce Niobium pentoxide-Titanium nanotube (Nb2O5-TNTs) composite as a novel anode material synthesized through hydrothermal method.
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10.1016/J.JALLCOM.2021.160643
Fe-Mn oxides/C composites with foamed porous structure have been synthesized successfully by a green and efficient method and employed as novel anode materials for lithium-ion batteries.
Fe-Mn oxides/C composites with foamed porous structure have been synthesized successfully by a green and efficient method and employed as novel anode materials for lithium-ion batteries.
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10.1016/j.jallcom.2020.156999
Addressing at this issue, we herein report a nanophase MnV2O4 material as a novel anode material for lithium-ion batteries.
Addressing at this issue, we herein report a nanophase MnV2O4 material as a novel anode material for lithium-ion batteries.
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10.4028/www.scientific.net/SSP.324.109
The results indicate that 2D AlSi performs great as a novel anode due to the moderate adhesion to Li and low barrier for ion diffusion.
The results indicate that 2D AlSi performs great as a novel anode due to the moderate adhesion to Li and low barrier for ion diffusion.
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10.1021/acsami.1c15524
The novel anode delivered excellent rate capabilities (107 mAh g-1 at 20 A g-1 and 78 mAh g-1 at 40 A g-1) and superior cycling stability (76% capacity retention after 14,000 cycles at 2 A g-1).
The novel anode delivered excellent rate capabilities (107 mAh g-1 at 20 A g-1 and 78 mAh g-1 at 40 A g-1) and superior cycling stability (76% capacity retention after 14,000 cycles at 2 A g-1).
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10.1016/j.jcis.2021.05.088
We report CoFe2O4 and carbon nanotubes hybrid aerogels as a novel anode material for potassium ion batteries (KIBs).
We report CoFe2O4 and carbon nanotubes hybrid aerogels as a novel anode material for potassium ion batteries (KIBs).
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10.1021/acsami.1c04231
Herein, we report a novel anode with a pomegranate-like nanostructure of SnP2O7 particles homogeneously dispersed in the robust N-doped carbon matrix.
Herein, we report a novel anode with a pomegranate-like nanostructure of SnP2O7 particles homogeneously dispersed in the robust N-doped carbon matrix.
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10.4028/www.scientific.net/KEM.896.61
The results indicate that bilayer phosphorus perform better as a novel anode due to the stronger adhesion to Li and lower barrier for ion diffusion.
The results indicate that bilayer phosphorus perform better as a novel anode due to the stronger adhesion to Li and lower barrier for ion diffusion.
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10.1016/J.MATPR.2021.04.205
This leads to synthesize a novel anode electrode material.
This leads to synthesize a novel anode electrode material.
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10.1039/D1SE00377A
Herein, a novel anode-free aqueous dual-ion cell is developed with expanded graphite as cathode, inactive current collector as anode replacement and inorganic/organic hybrid zinc salts as electrolyte.
Herein, a novel anode-free aqueous dual-ion cell is developed with expanded graphite as cathode, inactive current collector as anode replacement and inorganic/organic hybrid zinc salts as electrolyte.
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10.1364/OL.434653
Concentrated solar thermionic converters (CSTCs) are proposed by using three-dimensional (3D) Dirac material (DM) as the novel anode, significantly improving device performance.
Concentrated solar thermionic converters (CSTCs) are proposed by using three-dimensional (3D) Dirac material (DM) as the novel anode, significantly improving device performance.
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10.1016/j.matlet.2020.129032
Here, monoclinic CePO4 nanorods is synthesized and firstly evaluated as a novel anode of Li-ions batteries (LIBs).
Here, monoclinic CePO4 nanorods is synthesized and firstly evaluated as a novel anode of Li-ions batteries (LIBs).
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10.1007/s10853-021-05805-5
58O4-δ HEO nanocrystalline powder with high concentration of oxygen vacancies is successfully prepared by the method of solution combustion synthesis (SCS), and explored as a novel anode active material for LIBs.
58O4-δ HEO nanocrystalline powder with high concentration of oxygen vacancies is successfully prepared by the method of solution combustion synthesis (SCS), and explored as a novel anode active material for LIBs.
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10.1007/s00449-021-02649-w
The present study aims to investigate the synergistic effect of MoS2/CNTs nanocomposite as a novel anode-modifying material of MFCs.
The present study aims to investigate the synergistic effect of MoS2/CNTs nanocomposite as a novel anode-modifying material of MFCs.
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10.1016/J.JALLCOM.2021.160447
We report a simple approach for synthesizing Cu/SbxOy/Sb nanocomposite materials possessing yolk-shell structures for use as novel anode materials for Li-ion batteries.
We report a simple approach for synthesizing Cu/SbxOy/Sb nanocomposite materials possessing yolk-shell structures for use as novel anode materials for Li-ion batteries.
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10.1016/j.apenergy.2020.115913
9 kg m−3 d−1 is obtained with this novel anode (1.
9 kg m−3 d−1 is obtained with this novel anode (1.
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10.1016/J.ELECOM.2021.107038
Lead-based perovskites (PbTiO3 and PbZrO3) are introduced as novel anode materials for non-aqueous M-ion rechargeable batteries (M = Li, Na, K).
Lead-based perovskites (PbTiO3 and PbZrO3) are introduced as novel anode materials for non-aqueous M-ion rechargeable batteries (M = Li, Na, K).
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10.1039/C8TA10351H
This novel anode showed excellent cycling stability at a high current density of 3 mA cm−2.
This novel anode showed excellent cycling stability at a high current density of 3 mA cm−2.
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10.1039/C9RA00869A
The CoPS@C nanocomposite as a novel anode can maintain a capacity of about 713 mA h g−1 after 50 cycles at a current density of 0.
The CoPS@C nanocomposite as a novel anode can maintain a capacity of about 713 mA h g−1 after 50 cycles at a current density of 0.
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10.1007/s11581-019-03005-5
The results indicate that NbSe2 may be a promising anode for sodium-ion and potassium-ion batteries as a novel anode material.
The results indicate that NbSe2 may be a promising anode for sodium-ion and potassium-ion batteries as a novel anode material.
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10.1016/J.JALLCOM.2019.03.310
Furthermore, the carbon matrix structure in the electrode provides the conductive path for electrons, so no additional conductive agents are required in this novel anode design.
Furthermore, the carbon matrix structure in the electrode provides the conductive path for electrons, so no additional conductive agents are required in this novel anode design.
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10.1016/J.ENCONMAN.2019.03.082
The analysis is conducted with novel anode flow field designed for improved liquid water removal from the cell at higher currents.
The analysis is conducted with novel anode flow field designed for improved liquid water removal from the cell at higher currents.
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10.1016/J.JSSC.2019.01.012
In this paper, we reported a novel anode material, CeVO3, which can be used for both LIBs and sodium ions batteries (SIBs).
In this paper, we reported a novel anode material, CeVO3, which can be used for both LIBs and sodium ions batteries (SIBs).
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10.1016/J.JPOWSOUR.2019.227047
The present work may provide an insight into the design of novel anode materials for high-performance ASCs.
The present work may provide an insight into the design of novel anode materials for high-performance ASCs.
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10.1021/acs.nanolett.8b05127
Finally, we made use of these novel anodes for the assembly of Li-ion batteries exhibiting stable cycle life (cycled for over 500 cycles with <50% capacity loss at 0.
Finally, we made use of these novel anodes for the assembly of Li-ion batteries exhibiting stable cycle life (cycled for over 500 cycles with <50% capacity loss at 0.
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10.1039/c8cc07332e
In this study, a novel anode material of SnS hollow nanofibers (SnS HNFs) was rationally synthesized by a facile process and demonstrated to be a promising anode candidate for sodium-ion batteries.
In this study, a novel anode material of SnS hollow nanofibers (SnS HNFs) was rationally synthesized by a facile process and demonstrated to be a promising anode candidate for sodium-ion batteries.
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10.1016/J.CEJ.2019.05.198
In this work, we have designed a novel anode of three-dimensional porous interconnected carbon matrix embedded with Sb nanoparticles (Sb ⊂ 3DPC) via a scalable and facile polymer-blowing and galvanic replacement route.
In this work, we have designed a novel anode of three-dimensional porous interconnected carbon matrix embedded with Sb nanoparticles (Sb ⊂ 3DPC) via a scalable and facile polymer-blowing and galvanic replacement route.
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10.18321/ECTJ793
This paper introduces the novel anode material which is Li4Ti5O12/Si prepared by gas-stated method, mainly spray-pyrolysis technique.
This paper introduces the novel anode material which is Li4Ti5O12/Si prepared by gas-stated method, mainly spray-pyrolysis technique.
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10.1021/ACSSUSCHEMENG.9B01665
The main purpose of this paper is to utilize the intrinsic hydrophobicity and microstructure of graphene aerogel to construct a novel anode two-phase mass transfer structure for passive micro direct methanol fuel cell.
The main purpose of this paper is to utilize the intrinsic hydrophobicity and microstructure of graphene aerogel to construct a novel anode two-phase mass transfer structure for passive micro direct methanol fuel cell.
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10.1039/C9NJ00884E
Herein, the MoP@C nanocomposite was successfully fabricated via a facile sol–gel approach followed by an annealing process, which demonstrated excellent electrochemical properties as a novel anode for sodium storage.
Herein, the MoP@C nanocomposite was successfully fabricated via a facile sol–gel approach followed by an annealing process, which demonstrated excellent electrochemical properties as a novel anode for sodium storage.
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10.1002/anie.201814324
The novel anode shows a reversible specific capacity of 3656 mAh g-1 , approaching the theoretical capacity of 3861 mAh g-1 of pure lithium.
The novel anode shows a reversible specific capacity of 3656 mAh g-1 , approaching the theoretical capacity of 3861 mAh g-1 of pure lithium.
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10.1016/J.MENCOM.2019.01.036
A novel anode material based on Li4Ti5O12 prepared using the combination of poly-3,4-ethylenedioxythiophene/polystyrene sulfonate and carboxymethylcellulose for the conducting polymer binder was developed.
A novel anode material based on Li4Ti5O12 prepared using the combination of poly-3,4-ethylenedioxythiophene/polystyrene sulfonate and carboxymethylcellulose for the conducting polymer binder was developed.
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10.1016/j.chemosphere.2019.125455
These important synergisms allows finding conditions in which the novel anode can be competitive with the BDD.
These important synergisms allows finding conditions in which the novel anode can be competitive with the BDD.
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10.1021/acsomega.9b00045
Herein, for the first time, we report an anatase TiO2-derived Magnéli phase Ti6O11 as a novel anode material for KIBs.
Herein, for the first time, we report an anatase TiO2-derived Magnéli phase Ti6O11 as a novel anode material for KIBs.
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10.1016/J.IJHYDENE.2019.04.201
The results found in the present study will help in the design optimization of novel anode materials to deliver improved PD from MFCs.
The results found in the present study will help in the design optimization of novel anode materials to deliver improved PD from MFCs.
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10.1109/TRANSDUCERS.2019.8808726
We report a novel anode with silicon nanoparticles (SiNPs) enclosed in the cross-linked network of Ti3C2Tx, one of the typical two-dimensional transition metal carbides (MXenes), which can encapsulate SiNPs as well as providing void space for the expansion of SiNPs during lithiation.
We report a novel anode with silicon nanoparticles (SiNPs) enclosed in the cross-linked network of Ti3C2Tx, one of the typical two-dimensional transition metal carbides (MXenes), which can encapsulate SiNPs as well as providing void space for the expansion of SiNPs during lithiation.
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10.1016/J.PHYSLETA.2019.07.016
Preliminary analysis indicates that the arc demixing, the thermophysical properties of the mixture gas, and the carbon vapors from anode evaporation contribute to the formation of this novel anode attachment mode.
Preliminary analysis indicates that the arc demixing, the thermophysical properties of the mixture gas, and the carbon vapors from anode evaporation contribute to the formation of this novel anode attachment mode.
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10.1016/j.ijhydene.2019.10.113
Aiming to alleviate this problem, in this work a novel anode electrode structure is proposed, in which a microporous layer containing Nafion polymer is added between the catalyst layer and the microporous layer with PTFE.
Aiming to alleviate this problem, in this work a novel anode electrode structure is proposed, in which a microporous layer containing Nafion polymer is added between the catalyst layer and the microporous layer with PTFE.
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10.1039/c9cc07362k
A novel anode material with a delicate composite structure, which is assembled by growing 3D MoSe2 nanoflowers onto the hierarchically anisotropic carbon architecture, is designed for the first time.
A novel anode material with a delicate composite structure, which is assembled by growing 3D MoSe2 nanoflowers onto the hierarchically anisotropic carbon architecture, is designed for the first time.
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10.1016/J.JTICE.2018.11.011
In this study, we successfully synthesize CoCr2O4/C composite (CCO/CB) as novel anode materials for Li-ion batteries by using hydrothermal reaction and high energy ball milling technique.
In this study, we successfully synthesize CoCr2O4/C composite (CCO/CB) as novel anode materials for Li-ion batteries by using hydrothermal reaction and high energy ball milling technique.
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10.1016/j.jpowsour.2019.227107
When used as anode for Li-ion batteries (LIBs), crumpled N–Ti3C2/Fe2O3 nanocomposites exhibit high reversible capacity (1065 mA h g−1 at 100 mA g−1), fast charge/discharge ability and robust cycling performance (remains at 549 mA h g−1 after 400 cycles at 2 A g−1), which suggesting this novel anode material has potential prospect for Li-ion batteries.
When used as anode for Li-ion batteries (LIBs), crumpled N–Ti3C2/Fe2O3 nanocomposites exhibit high reversible capacity (1065 mA h g−1 at 100 mA g−1), fast charge/discharge ability and robust cycling performance (remains at 549 mA h g−1 after 400 cycles at 2 A g−1), which suggesting this novel anode material has potential prospect for Li-ion batteries.
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10.1039/c9nr00164f
In this study, a novel anode material, MoSe2 nanoflowers, for LIHCs was incorporated through a facile solvothermal technique.
In this study, a novel anode material, MoSe2 nanoflowers, for LIHCs was incorporated through a facile solvothermal technique.
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10.1016/J.JPOWSOUR.2019.04.002
The structural and electrochemical properties of novel anode material Ni0.
The structural and electrochemical properties of novel anode material Ni0.
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10.1016/J.ELECTACTA.2018.11.039
Enhancing microbial electrocatalysis through novel anode design is essential to the efficient and stable operation of microbial fuel cells.
Enhancing microbial electrocatalysis through novel anode design is essential to the efficient and stable operation of microbial fuel cells.
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10.1021/ACSSUSCHEMENG.9B00192
A novel anode material of Au nanoparticles grown on a self-supported reduced graphene oxide foam is successfully fabricated in this work.
A novel anode material of Au nanoparticles grown on a self-supported reduced graphene oxide foam is successfully fabricated in this work.
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10.1021/acs.nanolett.8b04417
Our findings will encourage more attention to bismuthene as a novel anode material for secondary batteries.
Our findings will encourage more attention to bismuthene as a novel anode material for secondary batteries.
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10.1016/J.MTENER.2018.11.009
In this study, a simple multiple templates strategy is applied to obtain the hierarchical porous carbon (HPC) material as a novel anode for PIBs after the pyrolysis and washing of polyacrylate (PAA) composed of NaCl crystals and Zn nanoparticles.
In this study, a simple multiple templates strategy is applied to obtain the hierarchical porous carbon (HPC) material as a novel anode for PIBs after the pyrolysis and washing of polyacrylate (PAA) composed of NaCl crystals and Zn nanoparticles.
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10.1109/IRPS.2019.8720601
It is found that, with the novel anode structure, battery charging C rate has little impact on the mechanical properties.
It is found that, with the novel anode structure, battery charging C rate has little impact on the mechanical properties.
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10.1021/ACSSUSCHEMENG.9B00641
Herein, we designed a novel anode material based on CoO-rGO by a simple solution-based method for Li-ion capacitors, which consists of CoO nanocrystallites uniformly distributed on graphene.
Herein, we designed a novel anode material based on CoO-rGO by a simple solution-based method for Li-ion capacitors, which consists of CoO nanocrystallites uniformly distributed on graphene.
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10.1080/09593330.2019.1575477
For practical applications, the power production of MFCs needs to be enhanced and the use of novel anode and cathode catalyst can certainly help in this regard.
For practical applications, the power production of MFCs needs to be enhanced and the use of novel anode and cathode catalyst can certainly help in this regard.
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10.1016/J.ENSM.2019.02.027
0 mg cm−2, making this novel anode applicable to pair with a variety of high areal loading (∼10 mg cm−2) cathodes, including lithium iron phosphate, Li-rich layered oxide and sulfur, showing great application potentials in practical Li metal batteries.
0 mg cm−2, making this novel anode applicable to pair with a variety of high areal loading (∼10 mg cm−2) cathodes, including lithium iron phosphate, Li-rich layered oxide and sulfur, showing great application potentials in practical Li metal batteries.
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10.1016/J.CEJ.2019.03.250
94@GO composite can serve as a novel anode for KIBs, and exhibit superior potassium storage performance.
94@GO composite can serve as a novel anode for KIBs, and exhibit superior potassium storage performance.
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10.1016/J.CEJ.2018.11.238
The synthesis of this novel anode with promising electrochemical performance reached the simple and effective use of boron, which may also provides new insights into boron-based anode materials for batteries.
The synthesis of this novel anode with promising electrochemical performance reached the simple and effective use of boron, which may also provides new insights into boron-based anode materials for batteries.
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10.1134/S1990793119010184
Finally, the F-doped Al20P21 was proposed as novel anode electrode in K-ion battery with the highest performance.
Finally, the F-doped Al20P21 was proposed as novel anode electrode in K-ion battery with the highest performance.
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10.1039/C9TA02067E
Herein, we for the first time report CoGa2S4 as a novel anode material for SIBs, exhibiting superior full cell performance when coupled with a high-voltage Na0.
Herein, we for the first time report CoGa2S4 as a novel anode material for SIBs, exhibiting superior full cell performance when coupled with a high-voltage Na0.
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10.1016/J.SSI.2019.115043
Finally, the TeO2-SiNT (9, 0) as novel anode electrodes in Li-ion batteries and Na-ion batteries are proposed with high performance.
Finally, the TeO2-SiNT (9, 0) as novel anode electrodes in Li-ion batteries and Na-ion batteries are proposed with high performance.
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10.1016/j.bios.2019.111594
We report a novel anode electrocatalyst, iron carbide nanoparticles dispersed in porous graphitized carbon (Nano-Fe3C@PGC), which is synthesized by facile approach involving a direct pyrolysis of ferrous gluconate and a following removal of free iron, but provides microbial fuel cells with superior performances.
We report a novel anode electrocatalyst, iron carbide nanoparticles dispersed in porous graphitized carbon (Nano-Fe3C@PGC), which is synthesized by facile approach involving a direct pyrolysis of ferrous gluconate and a following removal of free iron, but provides microbial fuel cells with superior performances.
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10.1039/c8dt04866e
As a novel anode material for lithium batteries, the FePS3@C nanocomposites exhibit a high capacity of 1000 mA h g-1 at a current density of 0.
As a novel anode material for lithium batteries, the FePS3@C nanocomposites exhibit a high capacity of 1000 mA h g-1 at a current density of 0.
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10.1016/j.apsusc.2019.143799
Finally, the C84-SnO2 as novel anode electrodes in LIB and KIB with the highest Vcell was proposed to use in electrical machines.
Finally, the C84-SnO2 as novel anode electrodes in LIB and KIB with the highest Vcell was proposed to use in electrical machines.
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