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Voltammetric behavior of 3,5-dinitrobenzoic acid in solution on GCE and encapsulated on multiwalled carbon nanotube modified electrode

机译:3,5-二硝基苯甲酸在GCE溶液中的溶出行为及包覆在多壁碳纳米管修饰电极上

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摘要

The cyclic voltammetric behavior of 3,5-dinitrobenzoic acid (3,5-DNB) in 0.1 M PBS of pH 7 was examined at a glassy carbon electrode (GCE). 3,5 -DNB was found to produce two irreversible reduction peaks corresponding to the reduction of each nitro group in the 3,5 -DNB molecule. Our results contradict previous studies (P. Gopal et al. Journal of Molecular Liquids 178 (2013) 168-174) wherein the same peaks are assigned as, the first, to the reduction of the nitro group to hydroxylamine and the second, to the subsequent reduction to amine derivative. Also we report that GCE modified with multiwalled carbon nanotubes (MWCNTs) can be derivatized with 3,5 DNB. The derivatization procedure involves simple immersion of the MWCNT-modified electrode in a solution containing 3,5 -DNB. SEM images reveal that the network of nanotubes form a homogeneous, twisted, densely packed, three-dimensional array that remains attached to the GCE surface. Both electrochemical and SEM measurements indicate that 3,5-DNB is encapsulated on the electrode, most probably by being trapped within the pockets of the mentioned three-dimensional array, without formation of covalent bonding.
机译:在玻璃碳电极(GCE)上检测了3,5-二硝基苯甲酸(3,5-DNB)在0.1 M PBS pH 7中的循环伏安行为。发现3,5-DNB产生两个不可逆的还原峰,其对应于3,5-DNB分子中每个硝基的还原。我们的结果与先前的研究(P.Gopal等.Journal of Molecular Liquids 178(2013)168-174)相矛盾,在该研究中,相同的峰被指定为:第一个是将硝基还原为羟胺,第二个是随后还原为胺衍生物。我们还报告说,用多壁碳纳米管(MWCNT)改性的GCE可以用3,5 DNB衍生化。衍生化过程包括将MWCNT修饰的电极简单地浸入含有3,5-DNB的溶液中。 SEM图像显示,纳米管网络形成均匀,扭曲,密集堆积的三维阵列,该阵列仍附着在GCE表面。电化学和SEM测量均表明3,5-DNB被包封在电极上,最有可能通过被捕获在所述三维阵列的袋内而没有形成共价键。

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