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首页> 外文期刊>ACS nano >Subpicosecond Photoinduced Hole Transfer from a CdS Quantum Dot to a Molecular Acceptor Bound Through an Exciton-Delocalizing Ligand
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Subpicosecond Photoinduced Hole Transfer from a CdS Quantum Dot to a Molecular Acceptor Bound Through an Exciton-Delocalizing Ligand

机译:亚皮秒光诱导的空穴从CdS量子点到通过激子离域配体的分子受体的结合。

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This paper describes the enhancement of the rate of hole transfer from a photoexcited CdS quantum dot (QD), with radius R = 2.0 nm, to a molecular acceptor, phenothiazine (PTZ), by linking the donor and acceptor through a phenyldithiocarbamate (PTC) linker, which is known to lower the confinement energy of the excitonic hole. Upon adsorption of PTC, the bandgap of the QD decreases due to delocalization of the exciton, primarily the excitonic hole, into interfacial states of mixed QD/PTC character. This delocalization enables hole transfer from the QD to PTZ in <300 fs (within the instrument response of the laser system) when linked by PTC, but not when linked by a benzoate group, which has a similar length and conjugation as PTC but does not delocalize the excitonic hole. Comparison of the two systems was aided by quantification of the surface coverage of benzoate and PTC-linked PTZ by H-1 NMR. This work provides direct spectroscopic evidence of the enhancement of the rate of hole extraction from a colloidal QD through covalent linkage of a hole acceptor through an exciton-delocalizing ligand.
机译:本文描述了通过将供体和受体通过苯基二硫代氨基甲酸酯(PTC)连接来提高从半径为R = 2.0 nm的光激发CdS量子点(QD)到分子受体吩噻嗪(PTZ)的空穴传输速率的方法。连接子,已知它可以降低激子孔的约束能量。吸附PTC后,由于激子(主要是激子空穴)向结合QD / PTC特性的界面态离域,QD的带隙减小。当通过PTC连接时,这种离域允许在<300 fs内(在激光系统的仪器响应范围内)从QD到PTZ进行空穴转移,但通过与PTC具有相似长度和共轭但不与PTC相似的苯甲酸酯基团连接时,则不能消除激子孔的位置。通过H-1 NMR定量分析苯甲酸酯和PTC连接的PTZ的表面覆盖率,有助于比较两个系统。这项工作提供了直接的光谱学证据,表明通过激子离域配体通过空穴受体的共价键合,提高了从胶体QD提取空穴的速率。

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