Yin Lujie, Li Yingtao, Yao Xincheng, Wang Yanzhou, Jia Lin, Liu Qiming, Li Junshuai, Li Yali, He Deyan
Key Laboratory of Special Function Materials and Structure Design of the Ministry of Education, and School of Physical Science and Technology, Lanzhou University, 222 South Tianshui Road, Lanzhou, 730000, People's Republic of China.
Nanomicro Lett. 2021 Feb 21;13(1):78. doi: 10.1007/s40820-021-00604-8.
Application of two-dimensional MXene materials in photovoltaics has attracted increasing attention since the first report in 2018 due to their metallic electrical conductivity, high carrier mobility, excellent transparency, tunable work function and superior mechanical property. In this review, all developments and applications of the TiCT MXene (here, it is noteworthy that there are still no reports on other MXenes' application in photovoltaics by far) as additive, electrode and hole/electron transport layer in solar cells are detailedly summarized, and meanwhile, the problems existing in the related studies are also discussed. In view of these problems, some suggestions are given for pushing exploration of the MXenes' application in solar cells. It is believed that this review can provide a comprehensive and deep understanding into the research status and, moreover, helps widen a new situation for the study of MXenes in photovoltaics.
自2018年首次报道以来,二维MXene材料因其金属导电性、高载流子迁移率、优异的透明度、可调节的功函数和卓越的机械性能,在光伏领域的应用受到了越来越多的关注。在这篇综述中,详细总结了TiCT MXene(值得注意的是,目前尚无其他MXene在光伏领域应用的报道)作为太阳能电池添加剂、电极及空穴/电子传输层的所有发展与应用,同时也讨论了相关研究中存在的问题。鉴于这些问题,给出了一些推动MXene在太阳能电池应用探索的建议。相信这篇综述能够提供对研究现状全面而深入的理解,此外,有助于拓宽MXene在光伏领域研究的新局面。