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Reversible Light-Induced On-Off Switching of Charge Traps in Quantum Dots Probe by Variable-Pulse-Rate Photoluminescence Spectroscopy

机译:通过可变脉冲速率光致发光光谱法通过脉冲速率光致发光光谱可逆光诱导的电荷陷阱电荷陷阱开关

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We devise an experiment, variable pulse rate photoluminescence, to control the accumulation of charges and the activation of charge traps in colloidal nanocrystals. The dynamics of these states is studied, with pulse repetition frequencies ranging from a few hundred hertz to the megahertz regime, by monitoring photoluminescence spectrograms with picosecond temporal resolution. We find that both photocharging and charge trapping contribute to photoluminescence quenching, and both processes can be reversibly induced by light.
机译:我们设计了实验,可变脉搏率光致发光,以控制电荷的积累和胶体纳米晶体中的电荷陷阱的激活。研究了这些状态的动态,脉冲重复频率从几百赫兹到Megahertz制度的范围,通过监测Pic秒时间分辨率的光致发光谱图。我们发现光火炬和电荷捕获有助于光致发光淬火,并且两个过程都可以通过光可逆地引起。

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