Putting the Squeeze on Lead Iodide Perovskites: Pressure-Induced Effects To Tune Their Structural and Optoelectronic Behavior

被引:101
|
作者
Ghosh, Dibyajyoti [1 ,2 ]
Aziz, Alex [2 ]
Dawson, James A. [2 ]
Walker, Alison B. [1 ]
Islam, M. Saiful [2 ]
机构
[1] Univ Bath, Dept Phys, Bath BA2 7AY, Avon, England
[2] Univ Bath, Dept Chem, Bath BA2 7AY, Avon, England
基金
英国工程与自然科学研究理事会;
关键词
DENSITY-FUNCTIONAL CALCULATIONS; INITIO MOLECULAR-DYNAMICS; METAL HALIDE PEROVSKITES; SOLAR-CELLS; CARRIER-LIFETIME; EFFICIENT; DEFECTS; CATIONS; PSEUDOPOTENTIALS; 1ST-PRINCIPLES;
D O I
10.1021/acs.chemmater.9b00648
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Lattice compression through hydrostatic pressure has emerged as an effective means of tuning the structural and optoelectronic properties of hybrid halide perovskites. In addition to external pressure, the local strain present in solution-processed thin films also causes significant heterogeneity in their photophysical properties. However, an atomistic understanding of structural changes of hybrid perovskites under pressure and their effects on the electronic landscape is required. Here, we use high level ab initio simulation techniques to explore the effect of lattice compression on the formamidinium (FA) lead iodide compound, FA(1-x)Cs(x)PbI(3) (x = 0, 0.25). We show that, in response to applied pressure, the Pb-I bonds shorten, the PbI6 octahedra tilt anisotropically, and the rotational dynamics of the FA(+) molecular cation are partially suppressed. Because of these structural distortions, the compressed perovskites exhibit band gaps that are narrower (red-shifted) and indirect with spin-split band edges. Furthermore, the shallow defect levels of intrinsic iodide defects transform to deep-level states with lattice compression. This work highlights the use of hydrostatic pressure as a powerful tool for systematically modifying the photovoltaic performance of halide perovskites.
引用
收藏
页码:4063 / 4071
页数:9
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