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理解无铅无机卤化物钙钛矿晶体结构转变的影响。

Understanding the Effect of Crystalline Structural Transformation for Lead-Free Inorganic Halide Perovskites.

作者信息

Shi Ming, Li Guanna, Tian Wenming, Jin Shengye, Tao Xiaoping, Jiang Yiming, Pidko Evgeny A, Li Rengui, Li Can

机构信息

State Key Laboratory of Catalysis, Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Adv Mater. 2020 Aug;32(31):e2002137. doi: 10.1002/adma.202002137. Epub 2020 Jun 28.

Abstract

Lead-free inorganic halide perovskites have triggered appealing interests in various energy-related applications including solar cells and photocatalysis. However, why perovskite-structured materials exhibit excellent photoelectric properties and how the unique crystalline structures affect the charge behaviors are still not well elucidated but essentially desired. Herein, taking inorganic halide perovskite Cs Bi Br as a prototype, the significant derivation process of silver atoms incorporation to induce the structural transformation from Cs Bi Br to Cs AgBiBr , which brings about dramatic differences in photoelectric properties is unraveled. It is demonstrated that the silver incorporation results in the co-operated orbitals hybridization, which makes the electronic distributions in conduction and valence bands of Cs AgBiBr more dispersible, eliminating the strong localization of electron-hole pairs. As consequences of the electronic structures derivation, exhilarating changes in photoelectric properties like band structure, exciton binding energy, and charge carrier dynamics are verified experimentally and theoretically. Using photocatalytic hydrogen evolution activity under visible light as a typical evaluation, such crystalline structure transformation contributes to a more than 100-fold enhancement in photocatalytic performances compared with pristine Cs Bi Br , verifying the significant effect of structural derivations on the exhibited performances. The findings will provide evidences for understanding the origin of photoelectric properties for perovskites semiconductors in solar energy conversion.

摘要

无铅无机卤化物钙钛矿在包括太阳能电池和光催化在内的各种能源相关应用中引发了人们的浓厚兴趣。然而,钙钛矿结构材料为何表现出优异的光电性能以及独特的晶体结构如何影响电荷行为仍未得到很好的阐释,但却是人们迫切想了解的。在此,以无机卤化物钙钛矿CsBiBr为原型,揭示了银原子掺入诱导结构从CsBiBr转变为CsAgBiBr的重要过程,这导致了光电性能的显著差异。结果表明,银的掺入导致了协同的轨道杂化,使得CsAgBiBr导带和价带中的电子分布更加分散,消除了电子-空穴对的强局域化。作为电子结构推导的结果,通过实验和理论验证了光电性能如能带结构、激子结合能和电荷载流子动力学的令人振奋的变化。以可见光下的光催化析氢活性作为典型评价,这种晶体结构转变使光催化性能比原始的CsBiBr提高了100多倍,证实了结构推导对所展示性能的显著影响。这些发现将为理解太阳能转换中钙钛矿半导体光电性能的起源提供证据。

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