Tang Kuen Wai, Li Senlei, Weeden Spencer, Song Ziyi, McClintock Luke, Xiao Rui, Senger R Tugrul, Yu Dong
Department of Physics and Astronomy, University of California-Davis, One Shields Avenue, Davis, California 95616, United States.
Department of Physics, Carleton College, Sayles Hill Campus Center, North College Street, Northfield, Minnesota 55057, United States.
J Phys Chem Lett. 2021 Apr 29;12(16):3951-3959. doi: 10.1021/acs.jpclett.1c00507. Epub 2021 Apr 19.
Excitons have fundamental impacts on optoelectronic properties of semiconductors. Halide perovskites, with long carrier lifetimes and ionic crystal structures, may support highly mobile excitons because the dipolar nature of excitons suppresses phonon scattering. Inspired by recent experimental progress, we perform device modeling to rigorously analyze exciton formation and transport in methylammonium lead triiodide under local photoexcitation by using a finite element method. Mobile excitons, coexisting with free carriers, can dominate photocurrent generation at low temperatures. The simulation results are in excellent agreement with the experimentally observed strong temperature and gate dependence of carrier diffusion. This work signifies that efficient exciton transport can substantially influence charge transport in the family of perovskite materials.
激子对半导体的光电特性有着根本性的影响。卤化物钙钛矿具有较长的载流子寿命和离子晶体结构,可能支持高迁移率的激子,因为激子的偶极性质抑制了声子散射。受近期实验进展的启发,我们使用有限元方法进行器件建模,以严格分析在局部光激发下碘化甲脒铅中的激子形成和输运。与自由载流子共存的移动激子在低温下可主导光电流的产生。模拟结果与实验观察到的载流子扩散强烈的温度和栅极依赖性高度吻合。这项工作表明,高效的激子输运可显著影响钙钛矿材料家族中的电荷输运。