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Square Wave Voltammetry of TNT at Gold Electrodes Modified with Self-Assembled Monolayers Containing Aromatic Structures

机译:含芳香结构的自组装单分子膜修饰的金电极上TNT的方波伏安法

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摘要

Square wave voltammetry for the reduction of 2,4,6-trinitrotoluene (TNT) was measured in 100 mM potassium phosphate buffer (pH 8) at gold electrodes modified with self-assembled monolayers (SAMs) containing either an alkane thiol or aromatic ring thiol structures. At 15 Hz, the electrochemical sensitivity (µA/ppm) was similar for all SAMs tested. However, at 60 Hz, the SAMs containing aromatic structures had a greater sensitivity than the alkane thiol SAM. In fact, the alkane thiol SAM had a decrease in sensitivity at the higher frequency. When comparing the electrochemical response between simulations and experimental data, a general trend was observed in which most of the SAMs had similar heterogeneous rate constants within experimental error for the reduction of TNT. This most likely describes a rate limiting step for the reduction of TNT. However, in the case of the alkane SAM at higher frequency, the decrease in sensitivity suggests that the rate limiting step in this case may be electron tunneling through the SAM. Our results show that SAMs containing aromatic rings increased the sensitivity for the reduction of TNT when higher frequencies were employed and at the same time suppressed the electrochemical reduction of dissolved oxygen.
机译:在100 mM磷酸钾缓冲液(pH 8)中,在用含有烷硫醇或芳环硫醇的自组装单分子膜(SAM)修饰的金电极上,测定了用于减少2,4,6-三硝基甲苯(TNT)的方波伏安法结构。在15 Hz时,所有测试的SAM的电化学灵敏度(µA / ppm)均相似。但是,在60 Hz时,含有芳族结构的SAMs的灵敏度比链烷硫醇SAM的灵敏度更高。实际上,烷硫醇SAM在较高频率下灵敏度降低。当比较模拟和实验数据之间的电化学响应时,观察到一个总体趋势,其中大多数SAM在降低TNT的实验误差范围内具有相似的异质速率常数。这很可能描述了减少TNT的速率限制步骤。但是,在烷烃SAM处于较高频率的情况下,灵敏度的降低表明在这种情况下的限速步骤可能是通过SAM的电子隧穿。我们的结果表明,当采用更高的频率时,含有芳环的SAM会提高TNT还原的敏感性,同时抑制溶解氧的电化学还原。

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