四方晶系
钙钛矿(结构)
正交晶系
相变
材料科学
碘化物
相(物质)
磁滞
化学物理
纳米技术
光电子学
结晶学
凝聚态物理
化学
晶体结构
无机化学
物理
有机化学
作者
Dehui Li,Gongming Wang,Hung Chieh Cheng,Chih-Yen Chen,Hao Wu,Yuan Liu,Yu Huang,Xiangfeng Duan
摘要
Abstract Methylammonium lead iodide perovskite has attracted considerable recent interest for solution processable solar cells and other optoelectronic applications. The orthorhombic-to-tetragonal phase transition in perovskite can significantly alter its optical, electrical properties and impact the corresponding applications. Here, we report a systematic investigation of the size-dependent orthorhombic-to-tetragonal phase transition using a combined temperature-dependent optical, electrical transport and transmission electron microscopy study. Our studies of individual perovskite microplates with variable thicknesses demonstrate that the phase transition temperature decreases with reducing microplate thickness. The sudden decrease of mobility around phase transition temperature and the presence of hysteresis loops in the temperature-dependent mobility confirm that the orthorhombic-to-tetragonal phase transition is a first-order phase transition. Our findings offer significant fundamental insight on the temperature- and size-dependent structural, optical and charge transport properties of perovskite materials, and can greatly impact future exploration of novel electronic and optoelectronic devices from these materials.
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