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Ultrafast separation of multiexcitons within core/shell quantum dot hybrid systems

机译:超速multiexcitons分离核/壳量子点的混合动力系统

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摘要

We investigated the electron transfer processes in methylene blue-CdTe and methylene blue-CdTe/CdSe complexes by steady state and femtosecond transient absorption spectroscopy by selective excitation of the quantum dot (QD) moiety. The ultrafast electron transfer is accelerated by the shell growth due to the separation of the charge carriers and the resulting increase of electron density in the shell. Transmission electron microscope images show that the successive addition of shell material deforms the spherical QDs until they adopt a tetrapodal shape. The increased donor–acceptor distance in the tetrapodal CdTe/CdSe QDs leads to a slower electron transfer. Photon flux dependent transient absorption measurements indicate the separation of two electrons for the QDs with a thin shell and thus demonstrate that charge carrier multiplication can be directly utilized for increased charge transfer in this type of QD hybrid system.
机译:我们调查了电子转移过程亚甲基blue-CdTe和亚甲基blue-CdTe / CdSe复合物的稳定状态和飞秒瞬态吸收光谱选择性量子点的激(QD)的一部分。超快电子转移是加速的壳牌增长由于电荷的分离运营商和结果增加了电子密度的壳。连续的显微镜图像显示外壳材料变形球面量子点,直到他们采用tetrapodal形状。亲距离增加tetrapodal CdTe量子点/ CdSe导致较慢的电子转移。瞬态吸收测量显示分离的量子点的两个电子薄壳,从而证明载体乘法可以直接利用在这种类型的QD增加电荷转移混合动力系统。

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