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The electrochemical signature of functionalized single-walled carbon nanotubes bearing electroactive groups

机译:带有电活性基团的功能化单壁碳纳米管的电化学特征

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We report the modification and characterization of single-walled carbon nanotubes (SWCNTs) in view of molecular sensing applications. We found that ultrasonicated SWCNTs present sticking properties that make them adhere on electrode surfaces. This allows excellent characterization of SWCNTs by cyclic voltammetry (CV) before and after'chemical functionalization with diazonium salts bearing electroactive groups. Bare SWCNTs presented distinct invariant shapes in CV, used as control curves, in comparison with functionalized SWCNTs for which specific signatures corresponding to the presence of grafted molecules were identified. According to the electronic substituents in the para position of the diazonium salts, divergent behaviours were observed for the grafting reactions. Diazonium salts having electrowithdrawing groups could be grafted without electrochemical induction whereas those bearing electron donating groups required a cathodic potential to generate the formation of the radical species.
机译:我们报告修改和表征的分子传感应用程序中的单壁碳纳米管(SWCNTs)。我们发现,超声处理的SWCNT具有粘附特性,使它们粘附在电极表面上。这允许在用带有电活性基团的重氮盐化学官能化之前和之后通过循环伏安法(CV)对SWCNT进行优异的表征。与功能化的SWCNTs相比,裸露的SWCNTs在CV中呈现出不同的不变形状,用作对照曲线,对于后者,可以识别出与嫁接分子的存在相对应的特定特征。根据重氮盐对位的电子取代基,对于接枝反应观察到不同的行为。具有吸电子基团的重氮盐可以在没有电化学感应的情况下接枝,而带有给电子基团的重氮盐则需要阴极电势才能生成自由基。

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