Ultrafast Intraband Auger Process in Self-Doped Colloidal Quantum Dots

Joonhyung Lim, Yun Chang Choi, D. Choi, I. Chang, K. Hyeon‐Deuk, K. S. Jeong, K. Kwak, M. Cho
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引用次数: 3

Abstract

Summary Investigating the separate dynamics of electrons and holes has been challenging, although it is critical for the fundamental understanding of semiconducting nanomaterials. n-Type self-doped colloidal quantum dots (CQDs) with excess electrons occupying the low-lying state in the conduction band (CB) have attracted a great deal of attention because of not only their potential applications to infrared optoelectronics but also their intrinsic system that offers a platform for investigating electron dynamics without elusive contributions from holes in the valence band. Here, we show an unprecedented ultrafast intraband Auger process, electron relaxation between spin-orbit coupling states, and exciton-to-ligand vibrational energy transfer process that all occur exclusively in the CB of the self-doped β-HgS CQDs. The electron dynamics obtained by femtosecond mid-infrared spectroscopy will pave the way for further understanding of the blinking phenomenon, disproportionate charging in light-emitting diodes, and hot electron dynamics in higher quantum states coupled to surface states of CQDs.
自掺杂胶体量子点的超快带内俄歇过程
研究电子和空穴的独立动力学一直具有挑战性,尽管它对半导体纳米材料的基本理解至关重要。具有多余电子占据传导带(CB)低洼态的n型自掺杂胶体量子点(CQDs)不仅因其在红外光电子学中的潜在应用,而且其内在系统为研究电子动力学提供了一个平台,而没有价带空穴的难以理解的贡献,因此引起了人们的广泛关注。在这里,我们展示了前所未有的超快带内俄歇过程,自旋轨道耦合态之间的电子弛豫,以及激子到配体的振动能量转移过程,这些过程都只发生在自掺杂β-HgS CQDs的CB中。飞秒中红外光谱获得的电子动力学将为进一步理解闪烁现象、发光二极管的非比例充电以及高量子态与CQDs表面态耦合的热电子动力学铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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