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Y Study on the influence of Cu/F dual-doping on the Fe-Mn based compound as cathode material for sodium ion batteries
期刊论文
JOURNAL OF POWER SOURCES, 2022, 卷号: 536, 页码: 9
Authors:
Zhang, Yixuan
;
Liu, Guoqiang
;
Su, Chang
;
Liu, Guangyin
;
Sun, Hongda
;
Qiao, Danlei
;
Wen, Lei
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  |  
View/Download:58/0
  |  
Submit date:2022/07/14
Fe-Mn based Oxide
Cu/F-substitution
Sodium ion batteries
P-2-type cathode
Electrochemical properties
Atomic-Scale Design of Anode Materials for Alkali Metal (Li/Na/K)-Ion Batteries: Progress and Perspectives
期刊论文
ADVANCED ENERGY MATERIALS, 2022, 页码: 29
Authors:
Olsson, Emilia
;
Yu, Jiale
;
Zhang, Haiyan
;
Cheng, Hui-Ming
;
Cai, Qiong
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  |  
View/Download:35/0
  |  
Submit date:2022/07/14
anodes
density functional theory
lithium-ion batteries
materials design
molecular dynamics
potassium-ion batteries
sodium-ion batteries
Nanosized VC synthesized by disproportionation reaction in molten salts as a promising anode for lithium/sodium-ion batteries
期刊论文
ELECTROCHIMICA ACTA, 2022, 卷号: 403, 页码: 9
Authors:
Liu, Rui Jia
;
Yang, Ling Xu
;
Wu, Jiang Tao
;
Bu, Huan Peng
;
Liu, Hui Jun
;
Zeng, Chao Liu
;
Fu, Chao
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  |  
View/Download:51/0
  |  
Submit date:2022/09/16
Nanosized VC
Disproportionation
Molten salts
Anodes
Lithium-ion batteries
Sodium-ion batteries
Improvement of electrochemical performance of Mn-Fe based
期刊论文
JOURNAL OF ALLOYS AND COMPOUNDS, 2021, 卷号: 878, 页码: 12
Authors:
Su, Chang
;
Liu, Guoqiang
;
Gao, Yibo
;
Zhang, Yixuan
;
Wen, Lei
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View/Download:68/0
  |  
Submit date:2021/10/15
Sodium ion batteries
Cathode materials
Mn-Fe based layered oxide
Mg doping
Electrochemical properties
Efficient Reversible Conversion between MoS2 and Mo/Na2S Enabled by Graphene-Supported Single Atom Catalysts
期刊论文
ADVANCED MATERIALS, 2021, 页码: 12
Authors:
Chen, Biao
;
Wang, Tianshuai
;
Zhao, Shiyong
;
Tan, Junyang
;
Zhao, Naiqin
;
Jiang, San Ping
;
Zhang, Qianfan
;
Zhou, Guangmin
;
Cheng, Hui-Ming
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  |  
View/Download:66/0
  |  
Submit date:2021/10/15
Mo/Na2S
MoS2
reversible conversion
single-atom catalysts
sodium-ion batteries
transition metal sulfides
Toward Understanding the Enhanced Pseudocapacitive Storage in 3D SnS/MXene Architectures Enabled by Engineered Surface Reactions
期刊论文
CHEMISTRY-A EUROPEAN JOURNAL, 2020, 页码: 11
Authors:
Qin, Jinwen
;
Hao, Linlin
;
Wang, Xin
;
Jiang, Yan
;
Xie, Xi
;
Yang, Rui
;
Cao, Minhua
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  |  
View/Download:61/0
  |  
Submit date:2021/02/02
MXenes
nanoparticles
precursor-guided synthesis
SnS
sodium-ion batteries
Toward Understanding the Enhanced Pseudocapacitive Storage in 3D SnS/MXene Architectures Enabled by Engineered Surface Reactions
期刊论文
CHEMISTRY-A EUROPEAN JOURNAL, 2020, 页码: 11
Authors:
Qin, Jinwen
;
Hao, Linlin
;
Wang, Xin
;
Jiang, Yan
;
Xie, Xi
;
Yang, Rui
;
Cao, Minhua
Favorite
  |  
View/Download:75/0
  |  
Submit date:2021/02/02
MXenes
nanoparticles
precursor-guided synthesis
SnS
sodium-ion batteries
A Nanosheet Array of Cu2Se Intercalation Compound with Expanded Interlayer Space for Sodium Ion Storage
期刊论文
ADVANCED ENERGY MATERIALS, 2020, 卷号: 10, 期号: 25, 页码: 8
Authors:
Xiao, Yuanhua
;
Zhao, Xiaobing
;
Wang, Xuezhao
;
Su, Dangcheng
;
Bai, Shuo
;
Chen, Wei
;
Fang, Shaoming
;
Zhou, Liming
;
Cheng, Hui-Ming
;
Li, Feng
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  |  
View/Download:56/0
  |  
Submit date:2021/02/02
Cu2Se
intercalation compounds
nanoarrays
sodium ion batteries
A Nanosheet Array of Cu2Se Intercalation Compound with Expanded Interlayer Space for Sodium Ion Storage
期刊论文
ADVANCED ENERGY MATERIALS, 2020, 页码: 8
Authors:
Xiao, Yuanhua
;
Zhao, Xiaobing
;
Wang, Xuezhao
;
Su, Dangcheng
;
Bai, Shuo
;
Chen, Wei
;
Fang, Shaoming
;
Zhou, Liming
;
Cheng, Hui-Ming
;
Li, Feng
Favorite
  |  
View/Download:64/0
  |  
Submit date:2021/02/02
Cu2Se
intercalation compounds
nanoarrays
sodium ion batteries
Synthesis and electrochemical properties of a new compound, Na0.8Li0.1Ni0.31Mn0.62O2
期刊论文
JOURNAL OF ALLOYS AND COMPOUNDS, 2019, 卷号: 792, 页码: 308-313
Authors:
Liu, Guoqiang
;
Yu, Han
;
Liang, Ji
;
Zhang, Jingyi
;
Wen, Lei
Favorite
  |  
View/Download:70/0
  |  
Submit date:2021/02/02
Sodium ion batteries
Cathode
Na0.8Li0.1Ni0.31Mn0.62O2
Electrochemical properties