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金属交换氧化钒纳米卷中的 pinned 低能电子激发

Pinned low-energy electronic excitation in metal-exchanged vanadium oxide nanoscrolls.

作者信息

Cao J, Musfeldt J L, Mazumdar S, Chernova N A, Whittingham M S

机构信息

Department of Chemistry, University of Tennessee, Knoxville, Tennessee 37996-1600, USA.

出版信息

Nano Lett. 2007 Aug;7(8):2351-5. doi: 10.1021/nl071002l. Epub 2007 Jul 12.

Abstract

We measured the optical properties of mixed valent vanadium oxide nanoscrolls and their metal-exchanged derivatives in order to investigate the charge dynamics in these compounds. In contrast to the prediction of a metallic state for the metal-exchanged derivatives within a rigid band model, we find that the injected charges in Mn2+-exchanged vanadium oxide nanoscrolls are pinned. A low-energy electronic excitation associated with the pinned carriers appears in the far infrared and persists at low temperature, suggesting that the nanoscrolls are weak metals in their bulk form, dominated by inhomogeneous charge disproportionation and Madelung energy effects.

摘要

我们测量了混合价态氧化钒纳米卷及其金属交换衍生物的光学性质,以研究这些化合物中的电荷动力学。与刚性带模型中对金属交换衍生物的金属态预测相反,我们发现Mn2+交换的氧化钒纳米卷中注入的电荷被固定。与固定载流子相关的低能电子激发出现在远红外区域,并在低温下持续存在,这表明纳米卷在其整体形式下是弱金属,受不均匀电荷歧化和马德隆能量效应主导。

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