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单壁碳纳米管与对羟基苯重氮盐反应的结构-反应性关系。

A structure-reactivity relationship for single walled carbon nanotubes reacting with 4-hydroxybenzene diazonium salt.

作者信息

Nair Nitish, Kim Woo-Jae, Usrey Monica L, Strano Michael S

机构信息

Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

J Am Chem Soc. 2007 Apr 4;129(13):3946-54. doi: 10.1021/ja068018i. Epub 2007 Mar 13.

Abstract

The first structure-reactivity relationship for electron-transfer reactions of single walled carbon nanotubes (SWNTs) has been derived and experimentally validated using 4-hydroxybenzene diazonium as a model electron acceptor. The model describes steady-state reaction data using an adsorption-controlled scheme, and electron transfer theories are used to explain the difference in reactivities between different nanotube chiralities. The formalism provides a mechanistic insight into electronically selective reactions. The influence of reagent concentration and external illumination (approximately 0.764 mW/cm2) on the reaction selectivity is described by the rate model, with quantitative descriptions of the changes in the UV-vis-nIR absorption spectra of nanotubes during reaction. Illumination was shown to decrease the selectivity of the reagent to metallic SWNTs over semiconducting SWNTs. We attribute this to the greater activity of the reagent in solution when exposed to light, resulting in greater extents of reaction for each SWNT and, hence, lower selectivity.

摘要

单壁碳纳米管(SWNTs)电子转移反应的首个结构-反应性关系已通过使用对羟基苯重氮盐作为模型电子受体推导得出并经实验验证。该模型采用吸附控制方案描述稳态反应数据,并运用电子转移理论解释不同纳米管手性之间反应活性的差异。这种形式体系为电子选择性反应提供了机理上的见解。速率模型描述了试剂浓度和外部光照(约0.764 mW/cm²)对反应选择性的影响,并对反应过程中纳米管紫外-可见-近红外吸收光谱的变化进行了定量描述。结果表明,光照会降低试剂对金属性SWNTs相对于半导体性SWNTs的选择性。我们将此归因于试剂在光照下在溶液中的活性更高,导致每种SWNT的反应程度更大,从而选择性更低。

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