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二氧化氮在碳纳米管壁上的手性和直径依赖性反应活性。

Chirality- and diameter-dependent reactivity of NO2 on carbon nanotube walls.

作者信息

Seo Kwanyong, Park Kyung Ah, Kim Changwook, Han Seungwu, Kim Bongsoo, Lee Young Hee

机构信息

Department of Chemistry, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Republic of Korea.

出版信息

J Am Chem Soc. 2005 Nov 16;127(45):15724-9. doi: 10.1021/ja052556y.

Abstract

We report the density-functional calculations of NO2 adsorption on single-walled carbon nanotube walls. A single molecular adsorption was endothermic with an activation barrier, but a collective adsorption with several molecules became exothermic without an activation barrier. We find that NO2 adsorption is strongly electronic structure- and strain-dependent. The NO2 adsorption on metallic nanotubes was energetically more favorable than that on semiconducting nanotubes and furthermore the adsorption became less stable with increasing diameters of nanotubes. The adsorption barrier height shows similar dependence on the electronic structure and diameter to the adsorption energy. Our theoretical model can be a good guideline for the separation of nanotubes by electronic structures using various adsorbates.

摘要

我们报道了二氧化氮在单壁碳纳米管管壁上吸附的密度泛函计算结果。单个分子的吸附是吸热的,存在一个活化能垒,但几个分子的集体吸附变为放热,且不存在活化能垒。我们发现二氧化氮的吸附强烈依赖于电子结构和应变。二氧化氮在金属纳米管上的吸附在能量上比在半导体纳米管上更有利,而且随着纳米管直径的增加,吸附变得不太稳定。吸附能垒高度对电子结构和直径的依赖性与吸附能相似。我们的理论模型可为利用各种吸附质通过电子结构分离纳米管提供很好的指导。

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