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Why semiconducting single-walled carbon nanotubes are separated from their metallic counterparts
Authors:Lu Jing  Lai Lin  Luo Guangfu  Zhou Jing  Qin Rui  Wang Dan  Wang Lu  Mei Wai Ning  Li Guangping  Gao Zhengxiang  Nagase Shigeru  Maeda Yutaka  Akasaka Takeshi  Yu Dapeng
Affiliation:Mesoscopic Physics Laboratory, Department of Physics, Peking University, Beijing, PR China. jinglu@pku.edu.cn
Abstract:The separation of single-walled carbon nanotubes (SWNTs) according to their electronic structure has attracted much recent attention. In many cases, metallic SWNTs are separated from semiconducting SWNTs and enriched in the supernatant due to stronger interaction between metallic SWNTs and adsorbates. However, the inverse separation of semiconducting from metallic SWNTs is often observed. In this computational study, the underlying mechanism is elucidated by density functional theory. We show that the shape of an aromatic molecule, the degree of hybridization between a molecule and a SWNT, and the oxidative state of SWNTs can affect the type of enriched SWNTs. In principle, one can control the type of enriched SWNTs by selecting a structurally compatible aromatic molecule or changing the hole concentration of the SWNTs.
Keywords:adsorption  density functional  calculations  doping  nanotubes  semiconductors
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