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Optical Excitation of Carbon Nanotubes Drives LocalizedDiazonium Reactions

机译:碳纳米管的光激发驱动局部化重氮反应

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摘要

Covalent chemistries have been widely used to modify carbon nanomaterials; however, they typically lack the precision and efficiency required to directly engineer their optical and electronic properties. Here, we show, for the first time, that visible light which is tuned into resonance with carbon nanotubes can be used to drive their functionalization by aryldiazonium salts. The optical excitation accelerates the reaction rate 154-fold (±13) and makes it possible to significantly improve the efficiency of covalent bonding to the sp2 carbon lattice. Control experiments suggest that the reaction is dominated by a localized photothermal effect. This light-driven reaction paves the way for precise nanochemistry that can directly tailor carbon nanomaterials at the optical and electronic levels.
机译:共价化学已被广泛用于修饰碳纳米材料。但是,它们通常缺乏直接设计其光学和电子特性所需的精度和效率。在这里,我们首次展示了与碳纳米管共振的可见光可用于驱动芳基重氮盐的功能化。光激发使反应速率加快了154倍(±13),并有可能显着提高共价键与sp 2 碳晶格的结合效率。对照实验表明,该反应主要受局部光热效应的影响。这种光驱动反应为精确的纳米化学铺平了道路,该化学可以直接在光学和电子水平上定制碳纳米材料。

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