论文标题

一维有机金属卤化物杂种中各向异性光致发光的表面影响

Surface Effects on Anisotropic Photoluminescence in One-Dimensional Organic Metal Halide Hybrids

论文作者

McClintock, Luke M., Yuan, Long, Song, Ziyi, Pettes, Michael T., Yarotski, Dmitry, Karkee, Rijan, Strubbe, David A., Tan, Liang Z., Ben-Akacha, Azza, Ma, Biwu, Shi, Yunshu, Taufour, Valentin, Yu, Dong

论文摘要

一维(1D)有机金属卤化物杂种表现出强烈的各向异性光学特性,高效的光发射和较大的Stokes Shings,这对新型的光电检测和照明应用持希望。但是,尚不清楚控制其独特的光学特性,尤其是表面效应的影响的基本机制。在这里,我们通过光激发能量的函数来研究1D C4N2H14PBBR4,并通过极化依赖性时间平均和时间分辨的光致发光(TRPL)光谱。令人惊讶的是,我们发现光激发下平行于一维金属卤化物链的发射可能比垂直极化下的发射更强或弱,具体取决于激发能。我们将激发 - 能源依赖性各向异性发射归因于快速表面重组,并由该材料中光吸收的第一原理计算支持。当激发与链平行时,快速表面重组通过TRPL测量直接确认。我们的综合研究提供了更完整的图片,以更深入地了解一1D有机金属卤化物杂种中的光学各向异性。

One-dimensional (1D) organic metal halide hybrids exhibit strongly anisotropic optical properties, highly efficient light emission, and large Stokes shift, holding promises for novel photodetection and lighting applications. However, the fundamental mechanisms governing their unique optical properties and in particular the impacts of surface effects are not understood. Here, we investigate 1D C4N2H14PbBr4 by polarization-dependent time-averaged and time-resolved photoluminescence (TRPL) spectroscopy, as a function of photoexcitation energy. Surprisingly, we find that the emission under photoexcitation polarized parallel to the 1D metal halide chains can be either stronger or weaker than that under perpendicular polarization, depending on the excitation energy. We attribute the excitation-energy-dependent anisotropic emission to fast surface recombination, supported by first-principles calculations of optical absorption in this material. The fast surface recombination is directly confirmed by TRPL measurements, when the excitation is polarized parallel to the chains. Our comprehensive studies provide a more complete picture for a deeper understanding of the optical anisotropy in 1D organic metal halide hybrids.

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