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通过部分阴离子交换过程形成的异二聚体:扫描隧道光谱法用于监测跨结能带与光致电荷分离的关系。

Heterodimers formed through a partial anionic exchange process: scanning tunneling spectroscopy to monitor bands across the junction vis-à-vis photoinduced charge separation.

作者信息

Bera Abhijit, Saha Sudip K, Pal Amlan J

机构信息

Department of Solid State Physics, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.

出版信息

Nanoscale. 2015 Nov 7;7(41):17366-74. doi: 10.1039/c5nr05785j.

DOI:10.1039/c5nr05785j
PMID:26426201
Abstract

We report controlled formation of heterodimers and their charge separation properties. CdS|CdTe heterodimers were formed through an anionic exchange process of CdS nanostructures. With control over the duration of the anionic exchange process, bulk|dot, bulk|bulk, and then dot|bulk phases of the semiconductors could be observed to have formed. A mapping of density of states as derived from scanning tunneling spectroscopy (STS) brought out conduction and valence band-edges along the nanostructures and heterodimers. The CdS|CdTe heterodimers evidenced a type-II band-alignment between the semiconductors along with the formation of a depletion region at the interface. The width (of the depletion region) and the energy-offset at the interface depended on the size of the semiconductors. We report that the width that is instrumental for photoinduced charge separation in the heterodimers has a direct correlation with the performance of hybrid bulk-heterojunction solar cells based on the nanostructures in a polymer matrix.

摘要

我们报道了异质二聚体的可控形成及其电荷分离特性。CdS|CdTe异质二聚体是通过CdS纳米结构的阴离子交换过程形成的。通过控制阴离子交换过程的持续时间,可以观察到半导体的体|点、体|体以及随后的点|体相已形成。由扫描隧道光谱(STS)得出的态密度映射揭示了沿纳米结构和异质二聚体的导带和价带边缘。CdS|CdTe异质二聚体证明了半导体之间的II型能带排列,同时在界面处形成了耗尽区。(耗尽区的)宽度和界面处的能量偏移取决于半导体的尺寸。我们报道,对异质二聚体中光致电荷分离起作用的宽度与基于聚合物基质中纳米结构的混合体-异质结太阳能电池的性能直接相关。

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