A review of rechargeable batteries for portable electronic devices
Yeru Liang,Yeru Liang,Chen-Zi Zhao,Hong Yuan,Yuan Chen,Weicai Zhang,Jia-Qi Huang,Dingshan Yu,Yingliang Liu,Maria-Magdalena Titirici,Yu-Lun Chueh,Haijun Yu,Qiang Zhang +12 more
- Vol. 1, Iss: 1, pp 6-32
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The article was published on 2019-03-01 and is currently open access. It has received 619 citations till now.read more
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Achieving high energy density and high power density with pseudocapacitive materials
Christopher S. Choi,David S. Ashby,David S. Ashby,Danielle M. Butts,Ryan H. DeBlock,Qiulong Wei,Jonathan Lau,Jonathan Lau,Bruce Dunn +8 more
TL;DR: In this article, the fundamental electrochemical properties of pseudocapacitive materials, with emphasis on kinetic processes and distinctions between battery and pseudo-capacitive material, are described.
Journal ArticleDOI
Adsorption‐Catalysis Design in the Lithium‐Sulfur Battery
Miao Zhang,Wei Chen,Lanxin Xue,Yu Jiao,Tianyu Lei,Junwei Chu,Jianwen Huang,Chuanhui Gong,Yan Chaoyi,Yichao Yan,Yin Hu,Xianfu Wang,Jie Xiong +12 more
Journal ArticleDOI
A review on energy chemistry of fast-charging anodes.
Wenlong Cai,Yu-Xing Yao,Gao-Long Zhu,Gao-Long Zhu,Chong Yan,Li-Li Jiang,Chuanxin He,Jia-Qi Huang,Qiang Zhang +8 more
TL;DR: The fundamentals, challenges, and solutions to enable graphite anodes that are capable of high-rate charging are summarized and some promising strategies proposed during the past few years are highlighted so as to outline current trends and future perspectives in this field.
Journal ArticleDOI
Recent Progress on the Alloy-Based Anode for Sodium-Ion Batteries and Potassium-Ion Batteries.
TL;DR: The latest progress for alloy-based anodes for SIBs and PIBs is summarized, mainly including Sn, Sb, Ge, Bi, Si, P, and their oxides, sulfides, selenides, and phosphides and the material designs for the desired Na+ /K+ storage performance, phase transform, ionic/electronic transport kinetics, and specific chemical interactions are discussed.
References
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Issues and challenges facing rechargeable lithium batteries
TL;DR: A brief historical review of the development of lithium-based rechargeable batteries is presented, ongoing research strategies are highlighted, and the challenges that remain regarding the synthesis, characterization, electrochemical performance and safety of these systems are discussed.
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Electrical Energy Storage for the Grid: A Battery of Choices
TL;DR: The battery systems reviewed here include sodium-sulfur batteries that are commercially available for grid applications, redox-flow batteries that offer low cost, and lithium-ion batteries whose development for commercial electronics and electric vehicles is being applied to grid storage.
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Challenges for Rechargeable Li Batteries
John B. Goodenough,Youngsik Kim +1 more
TL;DR: In this paper, the authors reviewed the challenges for further development of Li rechargeable batteries for electric vehicles and proposed a nonflammable electrolyte with either a larger window between its lowest unoccupied molecular orbital and highest occupied molecular orbital (HOMO) or a constituent that can develop rapidly a solid/ electrolyte-interface (SEI) layer to prevent plating of Li on a carbon anode during a fast charge of the battery.
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Li-O2 and Li-S batteries with high energy storage.
Peter G. Bruce,Stefan Freunberger,Laurence J. Hardwick,Laurence J. Hardwick,Jean-Marie Tarascon +4 more
TL;DR: The energy that can be stored in Li-air and Li-S cells is compared with Li-ion; the operation of the cells is discussed, as are the significant hurdles that will have to be overcome if such batteries are to succeed.
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Challenges in the development of advanced Li-ion batteries: a review
TL;DR: Li-ion battery technology has become very important in recent years as these batteries show great promise as power sources that can lead us to the electric vehicle (EV) revolution as mentioned in this paper.