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Structures and Electronic Properties of Different CH3NH3PbI3/TiO2 Interface: A First-Principles Study

机译:不同CH3NH3PBI3 / TIO2接口的结构和电子性质:一项研究

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Methylammonium lead iodide perovskite, CH3NH3PbI3, has attracted particular attention due to its fast increase in efficiency in dye sensitization TiO2 solid-state solar cells. We performed first-principles calculations to investigate several different types of CH3NH3PbI3/TiO2 interfaces. The interfacial structures between the different terminated CH3NH3PbI3 and phase TiO2 are thoroughly explored, and the calculated results suggest that the interfacial Pb atoms play important roles in the structure stability and electronic properties. A charge transfer from Pb atoms to the O atoms of TiO2 lead to the band edge alignment of Pb-p above Ti-d about 0.4?eV, suggesting a better carries separation. On the other hand, for TiO2, rutile (001) is the better candidate due to the better lattice and atoms arrangement match with CH3NH3PbI3.
机译:甲基磷铅碘化物钙钛矿,CH3NH3PBI3由于其在染料敏化TiO2固态太阳能电池效率的快速提高而受到特别关注。我们执行了第一原理计算以调查几种不同类型的CH3NH3PBI3 / TiO2接口。彻底探索不同终止的CH3NH3PBI3和相TiO2之间的界面结构,并且计算结果表明界面PB原子在结构稳定性和电子性质中起重要作用。从PB原子到TiO2的O原子的电荷转移导致PB-P高于Ti-D约0.4的频带边缘对准,表明更好的携带分离。另一方面,对于TiO 2,金红石(001)是由于更好的晶格和原子与CH3NH3PBI3匹配的更好的候选者。

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