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Photoluminescence and time-resolved carrier dynamics in thiol-capped CdTe nanocrystals under high pressure

机译:光致发光和时间分辨的载体动力在thiol-capped CdTe纳米晶体高压

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The application of static high pressure provides a method for precisely controlling and investigating many fundamental and unique properties of semiconductor nanocrystals (NCs). This study systematically investigates the high-pressure photoluminescence (PL) and time-resolved carrier dynamics of thiol-capped CdTe NCs of different sizes, at different concentrations, and in various stress environments. The zincblende-to-rocksalt phase transition in thiol-capped CdTe NCs is observed at a pressure far in excess of the bulk phase transition pressure. Additionally, the process of transformation depends strongly on NC size, and the phase transition pressure increases with NC size. These peculiar phenomena are attributed to the distinctive bonding of thiols to the NC surface. In a nonhydrostatic environment, considerable flattening of the PL energy of CdTe NC powder is observed above 3.0 GPa. Furthermore, asymmetric and double-peak PL emissions are obtained from a concentrated solution of CdTe NCs under hydrostatic pressure, implying the feasibility of pressure-induced interparticle coupling.
机译:静态高压的应用程序提供了一个精确的控制和方法调查许多基本的和独特的半导体纳米晶体的性质(nc)。本研究系统地调查高压光致发光(PL)时间分辨航母thiol-capped动力学CdTe nc的不同尺寸,不同浓度,在各种各样的压力环境。过渡thiol-capped CdTe nc是观察在体相的压力远远超出过渡的压力。转变很大程度上取决于数控大小和数控的相变压力增加大小。数控硫醇的独特结合表面。相当大的压扁的PL能源集团数控粉末观察高于3.0的绩点。不对称和双峰PL排放从浓溶液获得的CdTe nc在静水压力下,暗示的可行性pressure-induced颗粒间的耦合。

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