Wang Bingqian, Li Guangda
Key Laboratory of Processing and Testing Technology of Glass &, Functional Ceramics of Shandong Province, School of Materials Science and Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan, 250353, P. R. China.
Chemistry. 2022 Dec 1;28(67):e202202062. doi: 10.1002/chem.202202062. Epub 2022 Oct 1.
Due to the energy crisis by the excessive consumption of fossil fuels, Zinc-air batteries (ZABs) with high theoretical energy density have attracted people's attention. The overall performance of ZABs is largely determined by the air cathode catalyst. Therefore, it is necessary to develop high-efficiency and low-cost bifunctional catalysts to replace noble metal catalysts to promote the development of ZABs. Among a variety of cathode catalysts, TMS has become a research hotspot in recent years because of its better electrical conductivity than metal phosphides and metal oxides. In this work, we focus on the means of improving the electrocatalytic performance of transition-metal sulfides (TMS) providing ideas for us to rationally design high-performance catalysts. Furthermore, the performance improvement law between catalyst performance and ZABs is also discussed in this work. Finally, some challenges and opportunities faced in the research of TMS electrocatalysis are briefly proposed, and strategies for improving the performance of ZABs are prospected.
由于化石燃料的过度消耗引发能源危机,具有高理论能量密度的锌空气电池(ZABs)已引起人们的关注。ZABs的整体性能在很大程度上取决于空气阴极催化剂。因此,有必要开发高效且低成本的双功能催化剂来替代贵金属催化剂,以推动ZABs的发展。在各种阴极催化剂中,过渡金属硫化物(TMS)近年来成为研究热点,因为它比金属磷化物和金属氧化物具有更好的导电性。在这项工作中,我们专注于提高过渡金属硫化物(TMS)电催化性能的方法,为合理设计高性能催化剂提供思路。此外,这项工作还讨论了催化剂性能与ZABs之间的性能提升规律。最后,简要提出了TMS电催化研究面临的一些挑战和机遇,并展望了提高ZABs性能的策略。