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Numerical investigation and optimization of battery thermal management systems based on phase change material coupled with heating plates in low temperature environment Journal article
Chen, Zhanguo, Zhang, Feng, Shao, Linqian, Hu, Qing. Numerical investigation and optimization of battery thermal management systems based on phase change material coupled with heating plates in low temperature environment[J]. Journal of Energy Storage, 2024, 101, 113875.
Authors:  Chen, Zhanguo;  Zhang, Feng;  Shao, Linqian;  Hu, Qing
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:8.9/9.0 | Submit date:2024/10/10
Heating Plate  Insulation  Lithium-ion Battery  Low Temperature  Phase Change Material  Preheating  
Predicting doping strategies for ternary nickel–cobalt–manganese cathode materials to enhance battery performance using graph neural networks Journal article
Zhao, Zirui, Luo, Dong, Wu, Shuxing, Sun, Kaitong, Lin, Zhan, Li, Hai Feng. Predicting doping strategies for ternary nickel–cobalt–manganese cathode materials to enhance battery performance using graph neural networks[J]. Journal of Energy Storage, 2024, 98, 112982.
Authors:  Zhao, Zirui;  Luo, Dong;  Wu, Shuxing;  Sun, Kaitong;  Lin, Zhan; et al.
Favorite | TC[WOS]:2 TC[Scopus]:2  IF:8.9/9.0 | Submit date:2024/08/05
Doping Strategies  Electrochemical Performance  Graph Neural Networks  Lithium-ion Batteries  Ternary Nickel–cobalt–manganese Cathode Materials  
Rearrangement of H-bonds network of solvation structure via a zincophilic polyol-type surfactant to stabilize zinc anode in aqueous zinc-ion batteries Journal article
Wang, Huicai, Zhu, Mengyu, Wang, Huibo, Li, Chunxin, Ren, Zejia, Zhang, Yanlei, Chen, Shi, Li, Heng, Chen, Danling, Bai, Zhengshuai, Zhang, Yanyan, Tang, Yuxin. Rearrangement of H-bonds network of solvation structure via a zincophilic polyol-type surfactant to stabilize zinc anode in aqueous zinc-ion batteries[J]. Energy Storage Materials, 2024, 67, 103238.
Authors:  Wang, Huicai;  Zhu, Mengyu;  Wang, Huibo;  Li, Chunxin;  Ren, Zejia; et al.
Favorite | TC[WOS]:3 TC[Scopus]:3  IF:18.9/18.4 | Submit date:2024/04/02
Alkyl Polyglycoside  H-bonds Network  Hydrogen Evolution Reaction  Solvation Structure  Zn Anodes  
Double-shelled ZnS@ CoS2 nanocages with heterojunctions for high performance cathodes in lithium− sulfur batteries Journal article
Ji Zhou, Xin Chen, Wenbing Gong, Xiaodong Meng, Chao Chen, Xueqin Zhou, Manyun Wang, HUI KWUN NAM, Jianxin Geng. Double-shelled ZnS@ CoS2 nanocages with heterojunctions for high performance cathodes in lithium− sulfur batteries[J]. Journal of Energy Storage, 2024, 75, 109505.
Authors:  Ji Zhou;  Xin Chen;  Wenbing Gong;  Xiaodong Meng;  Chao Chen; et al.
Favorite |   IF:8.9/9.0 | Submit date:2024/08/28
Double-shelled ZnS@CoS2 nanocages with heterojunctions for high performance cathodes in lithium−sulfur batteries Journal article
Zhou, Ji, Chen, Xin, Gong, Wenbing, Meng, Xiaodong, Chen, Chao, Zhou, Xueqin, Wang, Manyun, Hui, Kwun Nam, Geng, Jianxin. Double-shelled ZnS@CoS2 nanocages with heterojunctions for high performance cathodes in lithium−sulfur batteries[J]. Journal of Energy Storage, 2024, 75, 109505.
Authors:  Zhou, Ji;  Chen, Xin;  Gong, Wenbing;  Meng, Xiaodong;  Chen, Chao; et al.
Favorite | TC[WOS]:8 TC[Scopus]:8  IF:8.9/9.0 | Submit date:2024/02/22
Built-in Electric Field  Electrocatalysis  Heterojunction  Lithium−sulfur Batteries  Nanocages  
Significance of electrolyte additive molecule structure in stabilizing interphase in LiNi0.8Co0.1Mn0.1O2/artificial graphite pouch cells at high temperature Journal article
Zhao, Huajun, Hu, Shiguang, Fan, Yanchen, Wang, Qingrong, Li, Jianding, Yuan, Mingman, Ma, Xinzhi, Wang, Jun, Shao, Huaiyu, Deng, Yonghong. Significance of electrolyte additive molecule structure in stabilizing interphase in LiNi0.8Co0.1Mn0.1O2/artificial graphite pouch cells at high temperature[J]. Energy Storage Materials, 2023, 65, 103151.
Authors:  Zhao, Huajun;  Hu, Shiguang;  Fan, Yanchen;  Wang, Qingrong;  Li, Jianding; et al.
Favorite | TC[WOS]:4 TC[Scopus]:6  IF:18.9/18.4 | Submit date:2024/02/22
Cyclic Ethylene Sulfate  Electrolyte Additive  Lithium Ion Battery  Molecular Structure  Solid Electrolyte Interphase  
Recent progress and prospects of pitch-based carbon anodes for alkali metal-ion (Li/Na/K) batteries Journal article
Jiang, Ye, Jiang, Jiangmin, Nie, Ping, Guo, Weijia, Geng, Chao, Sun, Zongfu, Fei, Yi, Chen, Yaxin, Zhuang, Quanchao, Xing, Zheng, Ju, Zhicheng, Shao, Huaiyu. Recent progress and prospects of pitch-based carbon anodes for alkali metal-ion (Li/Na/K) batteries[J]. Journal of Energy Storage, 2023, 72.
Authors:  Jiang, Ye;  Jiang, Jiangmin;  Nie, Ping;  Guo, Weijia;  Geng, Chao; et al.
Favorite | TC[WOS]:10 TC[Scopus]:11  IF:8.9/9.0 | Submit date:2024/01/10
Alkali metal-ion batteries  Electrochemical performance  Energy storage mechanism  Pitch-derived carbon anode  Structure regulation  
Recent progress and prospects of pitch-based carbon anodes for alkali metal-ion (Li/Na/K) batteries Review article
2023
Authors:  Jiang, Ye;  Jiang, Jiangmin;  Nie, Ping;  Guo, Weijia;  Geng, Chao; et al.
Favorite | TC[WOS]:10 TC[Scopus]:11  IF:8.9/9.0 | Submit date:2023/09/21
Alkali Metal-ion Batteries  Electrochemical Performance  Energy Storage Mechanism  Pitch-derived Carbon Anode  Structure Regulation  
Enhanced K-storage performance in ultralong cycle-life potassium-ion batteries achieved via carbothermal-reduction-synthesized KVOPO4 cathode Journal article
Li, Junfeng, Zheng, Yunshan, Hui, Kwan San, Wang, Kaixi, Zha, Chenyang, Dinh, Duc Anh, Tu, Jiguo, Shao, Zongping, Hui, Kwun Nam. Enhanced K-storage performance in ultralong cycle-life potassium-ion batteries achieved via carbothermal-reduction-synthesized KVOPO4 cathode[J]. Energy Storage Materials, 2023, 61, 102852.
Authors:  Li, Junfeng;  Zheng, Yunshan;  Hui, Kwan San;  Wang, Kaixi;  Zha, Chenyang; et al.
Favorite | TC[WOS]:5 TC[Scopus]:6  IF:18.9/18.4 | Submit date:2023/08/03
Carbothermal Reduction Approach  Interface Characterization  k Storage Mechanism  Kvopo4 Cathode  
Boosting the sodium storage performance of Prussian blue analogs by single-crystal and high-entropy approach Journal article
Huang, Yao, Zhang, Xuan, Ji, Lei, Wang, Li, Xu, Ben Bin, Shahzad, Muhammad Wakil, Tang, Yuxin, Zhu, Yaofeng, Yan, Mi, Sun, Guoxing, Jiang, Yinzhu. Boosting the sodium storage performance of Prussian blue analogs by single-crystal and high-entropy approach[J]. Energy Storage Materials, 2023, 58, 1-8.
Authors:  Huang, Yao;  Zhang, Xuan;  Ji, Lei;  Wang, Li;  Xu, Ben Bin; et al.
Favorite | TC[WOS]:62 TC[Scopus]:60  IF:18.9/18.4 | Submit date:2023/05/02
Prussian Blue Analogues  Sodium-ion Battery  High-entropy Material  Single Crystal