School of Optoelectronic Information, University of Electronic Science and Technology of China, Chengdu, 610054, China.
Department of Electronic and Electrical Engineering, University College London, Torrington Place, London, WC1E7JE, UK.
Adv Mater. 2018 Jan;30(3). doi: 10.1002/adma.201703737. Epub 2017 Nov 6.
Perovskite solar cells (PSCs) have developed rapidly over the past few years, and the power conversion efficiency of PSCs has exceeded 20%. Such high performance can be attributed to the unique properties of perovskite materials, such as high absorption over the visible range and long diffusion length. Due to the different diffusion lengths of holes and electrons, electron transporting materials (ETMs) used in PSCs play a critical role in PSCs performance. As an alternative to TiO ETM, ZnO materials have similar physical properties to TiO but with much higher electron mobility. In addition, there are many simple and facile methods to fabricate ZnO nanomaterials with low cost and energy consumption. This review focuses on recent developments in the use of ZnO ETM for PSCs. The fabrication methods of ZnO materials are briefly introduced. The influence of different ZnO ETMs on performance of PSCs is then reviewed. The limitations of ZnO ETM-based PSCs and some solutions to these challenges are also discussed. The review provides a systematic and comprehensive understanding of the influence of different ZnO ETMs on PSCs performance and potentially motivates further development of PSCs by extending the knowledge of ZnO-based PSCs to TiO -based PSCs.
钙钛矿太阳能电池(PSCs)在过去几年中发展迅速,其能量转换效率已经超过 20%。如此高的性能可以归因于钙钛矿材料的独特性质,例如在可见光范围内的高吸收率和长扩散长度。由于空穴和电子的扩散长度不同,PSCs 中使用的电子传输材料(ETM)对 PSCs 的性能起着关键作用。作为 TiO ETM 的替代品,ZnO 材料具有与 TiO 相似的物理性质,但电子迁移率要高得多。此外,还有许多简单易行的方法可以用低成本和低能耗来制备 ZnO 纳米材料。本综述重点介绍了 ZnO ETM 在 PSCs 中的最新应用进展。简要介绍了 ZnO 材料的制备方法。然后综述了不同 ZnO ETM 对 PSCs 性能的影响。还讨论了基于 ZnO ETM 的 PSCs 的局限性以及解决这些挑战的一些方法。本综述提供了对不同 ZnO ETM 对 PSCs 性能影响的系统和全面的理解,并通过将 ZnO 基 PSCs 的知识扩展到 TiO 基 PSCs,为进一步开发 PSCs 提供了潜在的动力。