| Literature DB >> 30338641 |
Dong Joo Min1, Fabien Miomandre2, Pierre Audebert2, Ji Eon Kwon1, Soo Young Park1.
Abstract
Because of the limitations of conventional metal-oxide-based electrodes, studies on organic redox-active materials as alternative electrodes for secondary batteries are emerging. However, reported organic electrode materials are still limited to a few kinds of organic redox groups. Therefore, the development of new redox-active groups for high-performance electrode materials is indispensable. Here, we evaluate s-tetrazine derivatives as a new electrode material in Li-ion batteries and study their charge/discharge mechanisms by ex situ XPS measurements. The porous carbon CMK-3 was introduced to encapsulate the s-tetrazines, which allowed 100 % utilization of the theoretical capacity and stable cycle performance of the s-tetrazines by preventing dissolution of the molecules into the electrolytes. This new class of redox-active group can pave the way for the next-generation of energy storage systems.Entities:
Keywords: lithium-ion secondary battery; organic battery; organic electrode materials; s-tetrazine
Year: 2018 PMID: 30338641 DOI: 10.1002/cssc.201802290
Source DB: PubMed Journal: ChemSusChem ISSN: 1864-5631 Impact factor: 8.928