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Functionalization of Single-Wall Carbon Nanotubes with Chromophores of Opposite Internal Dipole Orientation

机译:与内偶极子方向相反的发色团对单壁碳纳米管的功能化

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We report the functionalization of carbon nanotubes with two azobenzene-based chromophores with large internal dipole moments and opposite dipole orientations. The molecules are attached to the nanotubes noncovalently via a pyrene tether. A combination of characterization techniques shows uniform molecular coverage on the nanotubes, with minimal aggregation of excess chromophores on the substrate. The large on/off ratios and the subthreshold swings of the nanotube-based field-effect transistors (FETs) are preserved after functionalization, and different shifts in threshold voltage are observed for each chromophore. Ab initio calculations verify the properties of the synthesized chromophores and indicate very small charge transfer, confirming a strong, noncovalent functionalization.
机译:我们报告了碳纳米管的功能化与两个内部偶极矩大和相反的偶极方向的基于偶氮苯的发色团。分子通过a系链非共价地连接至纳米管。多种表征技术的结合显示出纳米管上均匀的分子覆盖,而底物上过量的发色团的聚集极少。功能化后,基于纳米管的场效应晶体管(FET)的较大的开/关比和亚阈值摆幅得以保留,并且每个生色团的阈值电压都有不同的变化。从头算计算可以验证合成发色团的性质,并表明电荷转移非常小,从而确认了强大的非共价官能团。

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