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A super stable Near-Infrared garnet phosphor resistant to thermal Quenching, thermal degradation and hydrolysis Journal article
Feng, Jiajun, Liu, Hongmin, Ma, Zhe, Feng, Jiahao, Chen, Lianfen, Li, Junhao, Cai, Yongqing, Zeng, Qingguang, Wen, Dawei, Guo, Yue. A super stable Near-Infrared garnet phosphor resistant to thermal Quenching, thermal degradation and hydrolysis[J]. Chemical Engineering Journal, 2022, 449, 137892.
Authors:  Feng, Jiajun;  Liu, Hongmin;  Ma, Zhe;  Feng, Jiahao;  Chen, Lianfen; et al.
Favorite | TC[WOS]:26 TC[Scopus]:29  IF:13.3/13.2 | Submit date:2022/08/02
Near-infrared Light  Thermal Stability  Chemical Stability  Dft Calculations  
Commercialization-Driven Electrodes Design for Lithium Batteries: Basic Guidance, Opportunities, and Perspectives Journal article
Chunyan Cao, Fanghua Liang, Wei Zhang, Hongchao Liu, Hui Liu, Haifeng Zhang, Jiajun Mao, Yanyan Zhang, Yu Feng, Yao, Xi, Mingzheng Ge, Yuxin Tang. Commercialization-Driven Electrodes Design for Lithium Batteries: Basic Guidance, Opportunities, and Perspectives[J]. Small, 2021, 17(43), 2102233.
Authors:  Chunyan Cao;  Fanghua Liang;  Wei Zhang;  Hongchao Liu;  Hui Liu; et al.
Favorite | TC[WOS]:51 TC[Scopus]:50  IF:13.0/13.5 | Submit date:2021/09/10
High Energy Density  High Mass Loading  Lithium Batteries  Rational Structure Design  Sluggish Charge Diffusion  
An interface-reinforced rhombohedral Prussian blue analogue in semi-solid state electrolyte for sodium-ion battery Journal article
Xie, Bingxing, Wang, Liguang, Li, Haifeng, Huo, Hua, Cui, Can, Sun, Baoyu, Ma, Yulin, Wang, Jiajun, Yin, Geping, Zuo, Pengjian. An interface-reinforced rhombohedral Prussian blue analogue in semi-solid state electrolyte for sodium-ion battery[J]. Energy Storage Materials, 2021, 36, 99-107.
Authors:  Xie, Bingxing;  Wang, Liguang;  Li, Haifeng;  Huo, Hua;  Cui, Can; et al.
Favorite | TC[WOS]:52 TC[Scopus]:54  IF:18.9/18.4 | Submit date:2021/10/02
Interfacial Reinforcement  Prussian Blue Analogues  Rhombohedral Bulk Phase  Semi-solid State Electrolyte  Sodium Ion Batteries  
Achieving long-life Prussian blue analogue cathode for Na-ion batteries via triple-cation lattice substitution and coordinated water capture Journal article
Xie, Bingxing, Zuo, Pengjian, Wang, Liguang, Wang, Jiajun, Huo, Hua, He, Mengxue, Shu, Jie, Li, Haifeng, Lou, Shuaifeng, Yin, Geping. Achieving long-life Prussian blue analogue cathode for Na-ion batteries via triple-cation lattice substitution and coordinated water capture[J]. Nano Energy, 2019, 61, 201-210.
Authors:  Xie, Bingxing;  Zuo, Pengjian;  Wang, Liguang;  Wang, Jiajun;  Huo, Hua; et al.
Favorite | TC[WOS]:145 TC[Scopus]:148  IF:16.8/16.3 | Submit date:2021/10/02
Cathode Materials  Coordinated Water Capture  Prussian Blue Analogues  Sodium Ion Batteries  Transition Metal Substitution