Wei Chuanliang, Tan Liwen, Zhang Yuchan, Zhang Kai, Xi Baojuan, Xiong Shenglin, Feng Jinkui, Qian Yitai
Research Center for Carbon Nanomaterials, Key Laboratory for Liquid-Solid Structural Evolution & Processing of Materials (Ministry of Education), School of Materials Science and Engineering, Shandong University, Jinan 250061, P.R. China.
School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, P.R. China.
ACS Nano. 2021 Aug 24;15(8):12741-12767. doi: 10.1021/acsnano.1c05497. Epub 2021 Aug 5.
Metal anodes based on a plating/stripping electrochemistry such as metallic Li, Na, K, Zn, Ca, Mg, Fe, and Al are recognized as promising anode materials for constructing next-generation high-energy-density rechargeable metal batteries owing to their low electrochemical potential, high theoretical specific capacity, superior electronic conductivity, . However, inherent issues such as high chemical reactivity, severe growth of dendrites, huge volume changes, and unstable interface largely impede their practical application. Covalent organic frameworks (COFs) and their derivatives as emerging multifunctional materials have already well addressed the inherent issues of metal anodes in the past several years due to their abundant metallophilic functional groups, special inner channels, and controllable structures. COFs and their derivatives can solve the issues of metal anodes by interfacial modification, homogenizing ion flux, acting as nucleation seeds, reducing the corrosion of metal anodes, and so on. Nevertheless, related reviews are still absent. Here we present a detailed review of multifunctional COFs and their derivatives in metal anodes for rechargeable metal batteries. Meanwhile, some outlooks and opinions are put forward. We believe the review can catch the eyes of relevant researchers and supply some inspiration for future research.
基于诸如金属锂、钠、钾、锌、钙、镁、铁和铝等电镀/脱镀电化学的金属阳极,因其低电化学电位、高理论比容量、优异的电子导电性,被认为是构建下一代高能量密度可充电金属电池的有前景的阳极材料。然而,诸如高化学反应性、严重的枝晶生长、巨大的体积变化和不稳定的界面等固有问题在很大程度上阻碍了它们的实际应用。共价有机框架(COFs)及其衍生物作为新兴的多功能材料,在过去几年中由于其丰富的亲金属官能团、特殊的内部通道和可控的结构,已经很好地解决了金属阳极的固有问题。COFs及其衍生物可以通过界面改性、使离子通量均匀化、作为成核种子、减少金属阳极的腐蚀等方式来解决金属阳极的问题。然而,相关的综述仍然缺乏。在此,我们对用于可充电金属电池的金属阳极中的多功能COFs及其衍生物进行了详细综述。同时,提出了一些展望和观点。我们相信这篇综述能够引起相关研究人员的关注,并为未来的研究提供一些灵感。