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首页> 外文期刊>Journal of physical chemistry letters >Hole Surface Trapping Dynamics Directly Monitored by Electron Spin Manipulation in CdS Nanocrystals
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Hole Surface Trapping Dynamics Directly Monitored by Electron Spin Manipulation in CdS Nanocrystals

机译:CdS纳米晶体中电子自旋操纵直接监测的孔表面陷阱动力学。

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摘要

A new detection technique, pump-spin orientation-probe ultrafast spectroscopy, is developed to study the hole trapping dynamics in colloidal CdS nanocrystals. The hole surface trapping process spatially separates the electron-hole pairs excited by the pump pulse, leaves the core negatively charged, and thus enhances the electron spin signal generated by the orientation pulse. The spin enhancement transients as a function of the pump-orientation delay reveal a fast and a slow hole trapping process with respective time constants of sub-10 ps and sub-100 ps, orders of magnitude faster than that of carrier recombination. The power dependence of hole trapping dynamics elucidates the saturation process and relative number of traps, and suggests that there are three subpopulations of nanoparticles related to hole surface trapping, one with the fast trapping pathway only, another with the slow trapping pathway only, and the third with both pathways together.
机译:开发了一种新的检测技术,即泵旋转取向探针超快光谱法,以研究胶体CdS纳米晶体中的空穴俘获动力学。空穴表面俘获过程在空间上分离了由泵浦脉冲激发的电子-空穴对,使铁芯带负电,从而增强了取向脉冲产生的电子自旋信号。自旋增强瞬变作为泵浦取向延迟的函数,揭示了一个快速和缓慢的空穴俘获过程,其各自的时间常数分别小于10 ps和小于100 ps,比载流子重组快几个数量级。空穴俘获动力学与功率的关系阐明了陷阱的饱和过程和相对数目,并表明存在与空穴表面俘获有关的纳米粒子的三个亚群,一个亚群仅具有快速的俘获途径,另一个仅具有缓慢的俘获途径,并且第三,两种途径并存。

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