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Distinct properties of single-wall carbon nanotubes with monovalent sidewall additions

机译:具有单价侧壁添加的单壁碳纳米管的不同特性

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Ab initio calculations reveal distinct electronic properties associated with functionalized single-wall carbon nanotubes (SWNTs) with monovalent sidewall additions. The metallic tubes are found to be more reactive than the semiconducting ones. The hybridization between the addend and the tube induces unique impurity states near the Fermi level. For semiconducting tubes the state is localized near the functionalized site with a characteristic length of 15 A. In contrast, the impurity state is extended and acts as a strong scattering centre in metallic tubes. This effect greatly hinders the ballistic transport of electrons along the metallic nanotubes. The characteristic dependence of the electronic states and the conductance on functional molecules provides possible pathways for chemical sensor applications and the band structure engineering.
机译:从头算计算得出与具有单价侧壁添加的功能化单壁碳纳米管(SWNT)相关的独特电子性能。发现金属管比半导体管更具反应性。加合物与试管之间的杂交在费米能级附近诱导出独特的杂质态。对于半导体管,状态局限在功能化位点附近,特征长度为15A。相反,杂质状态会扩展并在金属管中充当强散射中心。该效应极大地阻碍了电子沿着金属纳米管的弹道传输。电子态和电导对功能分子的特征依赖性为化学传感器应用和能带结构工程提供了可能的途径。

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