| Literature DB >> 32043825 |
Jin Cui1, Zhaowei Guo2, Jin Yi1, Xiaoyu Liu1, Kai Wu1, Pengcheng Liang1, Qian Li3, Yuyu Liu1, Yonggang Wang2, Yongyao Xia2,4, Jiujun Zhang1.
Abstract
Energy and environmental issues have given rise to the development of advanced energy-storage devices worldwide. Electrochemical energy technologies, such as rechargeable batteries, are considered to be the most reliable and efficient candidates. Compared with other batteries, zinc-based batteries seem promising due to their advantages, including inherent safety, cost-effectiveness, and environmentally friendliness. As potential alternatives to conventional inorganic cathodes, organic cathodes for Zn-organic batteries have become a hot topic for research, owing to their favorable characteristics, such as easy structure design, controllable synthesis, and environmental benignancy. Herein, a systematic overview on the fundamentals of organic cathode materials for zinc batteries, including material design, electrochemical mechanisms, technical advances, and challenging analysis, is provided. Furthermore, perspectives and corresponding research directions are offered to facilitate the future development of organic cathode materials for zinc batteries toward practical applications.Keywords: conducting polymers; electrochemistry; energy storage; organic cathode materials; zinc
Year: 2020 PMID: 32043825 DOI: 10.1002/cssc.201903265
Source DB: PubMed Journal: ChemSusChem ISSN: 1864-5631 Impact factor: 8.928