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单分散 CdSe/寡聚-PPV 纳米粒子中由极化驱动的量子点发光的强烈猝灭。

Polarization-driven stark shifts in quantum dot luminescence from single CdSe/oligo-PPV nanoparticles.

机构信息

Department of Chemistry and Department of Polymer Science and Engineering, University of Massachusetts, Amherst, Amherst, Massachusetts 01003, USA.

出版信息

Nano Lett. 2010 May 12;10(5):1754-8. doi: 10.1021/nl1001789.

Abstract

We demonstrate polarization-induced spectral shifts and associated linearly polarized absorption and emission in single CdSe/oligo-(phenylene vinylene) (CdSe/OPV) nanoparticles. A mechanism for these observations is presented in which charge separation from photoexcited ligands results in a significant Stark distortion of the quantum dot electron/hole wavefunctions. This distortion results in an induced linear polarization and an associated red shift in band-edge photoluminescence. These studies suggest the use of single quantum dots as local charge mobility probes.

摘要

我们在单个 CdSe/寡聚(苯乙烯基)(CdSe/OPV)纳米粒子中证明了偏振诱导的光谱位移以及相关的线性偏振吸收和发射。提出了一种解释这些观察结果的机制,其中来自光激发配体的电荷分离导致量子点电子/空穴波函数的显著斯塔克(Stark)扭曲。这种扭曲导致诱导的线性极化和带边光致发光的相关红移。这些研究表明可以将单个量子点用作局部电荷迁移率探针。

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