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激子 - 声子耦合如何影响卤化物钙钛矿纳米片的光致发光

How Exciton-Phonon Coupling Impacts Photoluminescence in Halide Perovskite Nanoplatelets.

作者信息

Gramlich Moritz, Lampe Carola, Drewniok Jan, Urban Alexander S

机构信息

Nanospectroscopy Group and Center for Nanoscience (CeNS), Nano-Institute Munich, Department of Physics, Ludwig-Maximilians-Universität München, Königinstr. 10, 80539 Munich, Germany.

出版信息

J Phys Chem Lett. 2021 Nov 25;12(46):11371-11377. doi: 10.1021/acs.jpclett.1c03437. Epub 2021 Nov 18.

Abstract

Semiconductor nanocrystals are receiving increased interest as narrow-band emitters for display applications. Here, we investigate the underlying photoluminescence (PL) linewidth broadening mechanisms in thickness-tunable 2D halide perovskite (CsPbBr) nanoplatelets (NPLs). Temperature-dependent PL spectroscopy on NPL thin films reveals a blue-shift of the PL maximum for thicker NPLs, no shift for three monolayer (ML) thick NPLs, and a red-shift for the thinnest (2 ML) NPLs with increasing temperature. Emission linewidths also strongly depend on NPL thickness, with the thinnest NPLs showing the smallest temperature-induced broadening. We determine the combined interaction of exciton-phonon coupling and thermal lattice expansion to be responsible for both effects. Additionally, the 2 ML NPLs exhibit a significantly larger Fröhlich coupling constant and optical phonon energy, possibly due to an inversion in the exciton fine structure. These results illustrate that ultrathin halide perovskite NPLs could illuminate the next generation of displays, provided a slightly greater sample homogeneity and improved stability.

摘要

半导体纳米晶体作为用于显示应用的窄带发射器正受到越来越多的关注。在此,我们研究了厚度可调的二维卤化物钙钛矿(CsPbBr)纳米片(NPLs)中潜在的光致发光(PL)线宽展宽机制。对NPL薄膜进行的温度相关PL光谱显示,随着温度升高,较厚的NPLs的PL最大值发生蓝移,三层单分子层(ML)厚的NPLs无位移,而最薄(2 ML)的NPLs发生红移。发射线宽也强烈依赖于NPL厚度,最薄的NPLs表现出最小的温度诱导展宽。我们确定激子 - 声子耦合和热晶格膨胀的联合相互作用是这两种效应的原因。此外,2 ML的NPLs表现出明显更大的弗罗利希耦合常数和光学声子能量,这可能是由于激子精细结构的反转。这些结果表明,只要样品均匀性稍高且稳定性有所改善,超薄卤化物钙钛矿NPLs有望为下一代显示器带来曙光。

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