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0D、1D 和 2D 纳米晶体的电吸收:CdSe 胶体量子点、纳米棒和纳米盘的比较研究。

Electroabsorption by 0D, 1D, and 2D nanocrystals: a comparative study of CdSe colloidal quantum dots, nanorods, and nanoplatelets.

出版信息

ACS Nano. 2014 Aug 26;8(8):7678-86. doi: 10.1021/nn503745u.

Abstract

This work presents a comprehensive study of electroabsorption in CdSe colloidal quantum dots, nanorods, and nanoplatelets. We experimentally demonstrate that the exposure of the nanoplatelets to a dc electric field leads to strong broadening of their lowest-energy heavy-hole absorption band and drastically reduces the absorption efficiency within the band. These are results of the quantum-confined Stark and Franz–Keldysh effects. The field-induced change in the nanoplatelets’ absorption is found to be more than 10 times the change in the absorption by the quantum dots. We also demonstrate that the electroabsorption by the nanorods is weaker than that by the quantum dots and nanoplatelets and reveal an unusual dependence of the differential absorption changes on the nanoplatelet thickness: the thicker the nanoplatelet, the smaller the change.

摘要

这项工作全面研究了 CdSe 胶体量子点、纳米棒和纳米板中的电吸收。我们实验证明,纳米板暴露于直流电场会导致其最低能量重空穴吸收带强烈展宽,并大大降低了带内的吸收效率。这些是量子限制斯塔克和弗朗兹-克尔迪什效应的结果。发现纳米板吸收的场致变化比量子点吸收的变化大 10 倍以上。我们还证明了纳米棒的电吸收比量子点和纳米板弱,并揭示了差分吸收变化对纳米板厚度的异常依赖性:纳米板越厚,变化越小。

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