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首页> 外文期刊>Electrochimica Acta >The effect of rapid functionalization on the structural and electrochemical properties of high-purity carbon nanotubes
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The effect of rapid functionalization on the structural and electrochemical properties of high-purity carbon nanotubes

机译:快速功能化对高纯度碳纳米管结构和电化学性能的影响

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In this study the microwave-assisted functionalization of high purity carbon nanotubes (BayTubes (R)) with well-known oxidation agents such as 5 and 10 M nitric acid, 10% hydrogen peroxide solution, a mixture of both, or 0.2 M potassium permanganate, is investigated and compared to CNTs treated by conventional oil bath heating. The obtained CNT materials are characterized with a variety of bulk and surface characterization techniques (XPS, Raman, TGA, TEM) and the obtained results could be correlated successfully with the severity of the treatment and the electrochemical properties of the CNTs. Depending on the oxidation agent oxygen containing functional groups are introduced into the CNTs where the chemical constitution of the functional groups in a hydrogen peroxide treated sample is significantly different from those by all other treatments. As a result the electrochemical behavior is strongly influenced which is clearly demonstrated by the absence of the quinone-type redox couple in this sample, which is found in all other samples. Finally, the time dependence of a nitric acid treatment is investigated and the obtained results allow setting up tailored procedures for functionalization of high purity carbon nanotubes resulting in materials with a controlled amount of oxygen containing functional groups that can be used for a variety of further synthesis steps. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,使用众所周知的氧化剂(例如5和10 M的硝酸,10%的过氧化氢溶液,两者的混合物或0.2 M的高锰酸钾)对高纯度碳纳米管(BayTubes(R))进行微波辅助的功能化进行了研究,并将其与通过常规油浴加热处理的CNT进行了比较。所获得的CNT材料通过多种本体和表面表征技术(XPS,拉曼,TGA,TEM)进行表征,并且所获得的结果可以成功地与CNT的处理强度和电化学性质相关。取决于氧化剂,将含氧的官能团引入CNT,其中过氧化氢处理的样品中的官能团的化学组成与所有其他处理的显着不同。结果,强烈地影响了电化学行为,这在该样品中不存在醌型氧化还原对,这在所有其他样品中均可以清楚地证明。最后,研究了硝酸处理的时间依赖性,并且获得的结果允许建立量身定制的程序,用于高纯度碳纳米管的功能化,从而得到具有可控制量的含氧官能团的材料,该材料可用于多种进一步的合成脚步。 (C)2015 Elsevier Ltd.保留所有权利。

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