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Free 3
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Book / Working Paper 3
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English 3
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Chen, Junchen 3 Guo, Bingshu 3 Li, Xing 3 Ma, Zhiyuan 3 Wang, Mingshan 3 Yu, Bo 3 Huang, Yun 2 Chen, Yangyang 1 Fu, Zheng 1 Han, Zhiqiang 1 Huang, Rong 1 Ji, Hongjiang 1 Jiang, Changhuan 1 Jin, Yifu 1 Li, Pei 1 Li, Rui 1 Lin, Yuanhua 1 Liu, Xinhui 1 Pu, Wang 1 Wu, Dongjie 1 Yang, Zhenzhong 1 Zhao, Ling 1
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EA22-0667 1
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ECONIS (ZBW) 3
Showing 1 - 3 of 3
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Fundamental Mechanism Revealed for Lithium Deficiencies Engineering in a New Spherical Li-Rich Mn-Based Layered Li1.23mn0.46ni0.246co0.046al0.015o2 Cathode
Liu, Xinhui; Jiang, Changhuan; Yu, Bo; Wang, Mingshan; … - 2022
Here, a new spherical Li1.23Mn0.46Ni0.246Co0.046Al0.015O2 (0.6Li2MnO3·0.4LiNi0.8Co0.15Al0.05O2, LMNCA) cathode with low cobalt content is rationally designed and prepared. The lithium deficiencies engineering with different lithium (from 75% to 103% of theoretically stoichiometric ratio...
Persistent link: https://www.econbiz.de/10013299746
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Stable Cycling of High Nickel Li-Metal Batteries with Limited Li Anode in Fluorine Rich Flame Retardant Electrolytes
Li, Pei; Chen, Yangyang; Li, Rui; Yu, Bo; Pu, Wang; … - 2022
Traditional carbonate-based electrolytes are not suitable for high voltage lithium metal batteries (LMBs), which seriously hinders the development of high-energy density LMBs. Here, a novel flame retardant fluorine-rich electrolyte (termed FFT) composed of 1.2 M lithium hexafluorophosphate (LiPF...
Persistent link: https://www.econbiz.de/10013303045
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Stabilizing Zinc Anode for High-Performance Aqueous Zinc Ion Batteries Via Employing a Novel Inositol Additive
Ji, Hongjiang; Han, Zhiqiang; Lin, Yuanhua; Yu, Bo; Wu, … - 2022
Here, a natural and non-toxic inositol additive with six hydroxyl groups is added into the 2 M ZnSO4 aqueous baseline electrolyte to enhance the electrochemical performances of the zinc ion batteries (ZIBs). 2H chemical shift in the Nuclear magnetic resonance demonstrates that the inositol...
Persistent link: https://www.econbiz.de/10013305459
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