Munson Kyle T, Swartzfager John R, Gan Jianing, Asbury John B
Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, United States.
J Phys Chem Lett. 2020 Apr 16;11(8):3166-3172. doi: 10.1021/acs.jpclett.0c00762. Epub 2020 Apr 7.
The role of dipolar motion of organic cations in the A-sites of halide perovskites has been debated in an effort to understand why these materials possess such remarkable properties. Here, we show that the dipolar motion of cations such as methylammonium (MA) or formamidinium (FA) versus cesium (Cs) does not influence large polaron binding energies, delocalization lengths, formation times, or bimolecular recombination lifetimes in lead bromide perovskites containing only one type of A-site cation. We directly probe the transient absorption spectra of large polarons throughout the entire mid-infrared and resolve their dynamics on time scales from sub-100 fs to sub-μs using time-resolved mid-infrared spectroscopy. Our findings suggest that the improved optoelectronic properties reported of halide perovskites with mixed A-site cations may result from synergy among the cations and how their mixture modulates the structure and dynamics of the inorganic lattice rather than from the dipolar properties of the cations themselves.
为了理解卤化物钙钛矿A位有机阳离子的偶极运动为何能使这些材料具有如此卓越的性能,人们对此展开了讨论。在此,我们表明,在仅含有一种A位阳离子的溴化铅钙钛矿中,诸如甲铵(MA)或甲脒(FA)等阳离子与铯(Cs)相比的偶极运动,不会影响大极化子结合能、离域长度、形成时间或双分子复合寿命。我们利用时间分辨中红外光谱,直接探测了整个中红外区域大极化子的瞬态吸收光谱,并解析了它们在亚100飞秒至亚微秒时间尺度上的动力学过程。我们的研究结果表明,具有混合A位阳离子的卤化物钙钛矿所报道的改善的光电性能,可能源于阳离子之间的协同作用以及它们的混合物对无机晶格结构和动力学的调制方式,而非阳离子本身的偶极性质。