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Phase Segregation and Photothermal Remixing of Mixed-Halide Lead Perovskites

机译:混合卤化物铅钙锌矿相偏析和光热再混合

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摘要

Mixed-halide lead perovskites (MHPs) are promising materials for photovoltaics and optoelectronics due to their highly tunable band gaps. However, they phase segregate under continuous illumination or an electric field, the mechanism of which is still under debate. Herein we systematically measure the phase segregation behavior of polymer-encapsulated CH3NH3Pb(BrxI1-x)(3) MHPs as a function of excitation intensity and the nominal halide ratio by in situ photoluminescence microspectroscopy and observe surprising phase dynamics at the beginning of the illumination. The initial phase segregation to I-rich and Br-rich phases is observed followed by the formation of a new mixed-halide phase within several seconds that has not been reported before. We propose that the photothermal effect is amplified at the small-size I-rich domains, which significantly changes the local phase segregation in the otherwise uniform film within milliseconds after illumination.
机译:混合卤化物铅钙钛矿(MHPS)是光伏电极和光电子的有希望的材料,由于它们的高度可调谐带隙。 然而,它们在连续照明或电场下相相隔离,其机制仍在辩论下。 在此,通过原位光致发光微型光谱检查系统地系统地测量聚合物包封的CH3NH3PB(BRXI1-X)(3)MHP的相位分离行为和由原位光致发光微型光谱检查并观察照明开始时的惊人的相动力学。 观察到富含I-富含的富含Br和Br的相的初始相偏析,然后在几秒钟内形成新的混合卤化物相。 我们提出在小型I富型结构域中扩增光热效应,在照明后在毫秒内显着地改变了其他均匀膜中的局部相偏析。

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