Sumpter Bobby G, Jiang De-En, Meunier Vincent
Computer Science and Mathematics Division, Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.
Small. 2008 Nov;4(11):2035-42. doi: 10.1002/smll.200800298.
The fundamental role of aryl diazonium salts for post-synthesis selectivity of carbon nanotubes is investigated using extensive electronic-structure calculations. The resulting understanding for diazonium-salt-based selective separation of conducting and semiconducting carbon nanotubes shows how the primary contribution comes from the interplay between the intrinsic electronic structure of the carbon nanotubes and that of the anion of the salt. We demonstrate how the electronic-transport properties change upon the formation of charge-transfer complexes and upon their conversion into covalently attached functional groups. The results are found to correlate well with experiments and provide for the first time an atomistic description for diazonium-salt-based chemical separation of carbon nanotubes.
利用广泛的电子结构计算研究了芳基重氮盐在碳纳米管合成后选择性方面的基本作用。对基于重氮盐的导电和半导体碳纳米管选择性分离的研究结果表明,主要贡献来自碳纳米管的固有电子结构与盐阴离子的电子结构之间的相互作用。我们展示了电荷转移复合物形成时以及它们转化为共价连接的官能团时电子传输性质是如何变化的。结果发现与实验结果相关性良好,并首次为基于重氮盐的碳纳米管化学分离提供了原子描述。