Ghosh Dibyajyoti, Acharya Debdipto, Zhou Liujiang, Nie Wanyi, Prezhdo Oleg V, Tretiak Sergei, Neukirch Amanda J
Theoretical Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, United States.
Center for Nonlinear Studies, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, United States.
J Phys Chem Lett. 2019 Sep 5;10(17):5000-5007. doi: 10.1021/acs.jpclett.9b02020. Epub 2019 Aug 16.
Hybrid halide perovskites frequently undergo structural expansion due to various stimuli, significantly affecting their electronic properties and in particular their charge carrier dynamics. It is essential to atomistically model how geometric changes modify electronic characteristics that are important for applications such as light harvesting and lighting. Using simulations, here we investigate the structural dynamics and optoelectronic properties of FAPbI under tensile strain. The applied strain leads to elongation of the Pb-I bonds and a decrease in the level of PbI octahedral tilting, which manifests as blue-shifts in band gaps. Nonadiabatic molecular dynamics simulations further reveal that charge carrier recombination rates moderately decrease in these expanded lattices. The complex influence of lattice dynamics on electron-phonon scattering results in a longer carrier lifetime, which is advantageous for efficient solar cells. By providing detailed information about the structure-property relationships, this work emphasizes the role of controlled lattice expansion in enhancing the electronic functionalities of hybrid perovskites.
混合卤化物钙钛矿经常因各种刺激而发生结构膨胀,这对其电子性质,尤其是其电荷载流子动力学有显著影响。从原子层面模拟几何变化如何改变对光收集和照明等应用至关重要的电子特性至关重要。通过模拟,我们在此研究了拉伸应变下FAPbI的结构动力学和光电性质。施加的应变导致Pb-I键伸长,PbI八面体倾斜程度降低,这表现为带隙蓝移。非绝热分子动力学模拟进一步表明,在这些膨胀晶格中电荷载流子复合率适度降低。晶格动力学对电子-声子散射的复杂影响导致载流子寿命延长,这对高效太阳能电池有利。通过提供有关结构-性质关系的详细信息,这项工作强调了可控晶格膨胀在增强混合钙钛矿电子功能方面的作用。