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首页> 外文期刊>Electrochimica Acta >Comparative electrochemical study of self-assembled monolayers of 2-mercaptobenzoxazole, 2-mercaptobenzothiazole, and 2-mercaptobenzimidazole formed on polycrystalline gold electrode
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Comparative electrochemical study of self-assembled monolayers of 2-mercaptobenzoxazole, 2-mercaptobenzothiazole, and 2-mercaptobenzimidazole formed on polycrystalline gold electrode

机译:在多晶金电极上形成的2-巯基苯并恶唑,2-巯基苯并噻唑和2-巯基苯并咪唑自组装单层的比较电化学研究

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摘要

Comparative electrochemical behavior of self-assembled monolayers (SAMs) of three heteroaromatic thiols, 2-mercaptobenzoxazole (MBO), 2-mercaptobenzothiazole (MBT), and 2-mercaptobenzimidazole (MBI) are investigated by means of cyclic voltammetry and electrochemical impedance spectroscopy (EIS). The electrochemical characteristics of the electrode/solution interface are considerably and differently affected by thiols constructing the SAMs. The consumed charges for reductive desorption of SAMs, which is criterion for the amount of chemically adsorbed thiol, are significantly different for these three SAMs, specially for MBT, implying that SAM of MBT is formed through both sulfur atoms; the thiol sulfur and skeleton sulfur of the thiazole ring. Desorption potentials of the SAMs have shown the following order for strength of gold-sulfur bond: MBT > MBO > MBI. Activity of the three SAMs as pH-sensitive interfaces was also investigated and their surface-pK{sub}a values derived from the EIS measurements showed this order for acidic strength of SAMs: MBO > MBT> MBI. This is the same order expected due to the difference in electronegativity of the O, S, and N heteroatoms, and confirms that the most electron-rich ring imidazole is attached to the benzene ring of MBI. A comparison of the interfacial charge transfer resistance variation as a function of gold immersion time in thiols solution reveals that kinetics of Au-MBT assembly is different from those of two others and confirms formation of Au-MBT SAM via both sulfur atoms of MBT.
机译:通过循环伏安法和电化学阻抗谱法(EIS)研究了三种杂芳族硫醇(2-巯基苯并恶唑(MBO),2-巯基苯并噻唑(MBT)和2-巯基苯并咪唑(MBI))的自组装单层(SAM)的比较电化学行为)。电极/溶液界面的电化学特性受到构造SAM的硫醇的影响很大且不同。这三种SAM的还原脱附所消耗的电荷是化学吸附硫醇量的标准,这对于三种SAM(尤其是MBT)而言是显着不同的,这意味着MBT的SAM是通过两个硫原子形成的。噻唑环的硫醇硫和骨架硫。 SAM的解吸电势对金-硫键的强度显示出以下顺序:MBT> MBO> MBI。还研究了这三种SAM作为pH敏感界面的活性,它们从EIS测量得出的表面pK {sub} a值显示了SAM的酸性强度的顺序为:MBO> MBT> MBI。由于O,S和N杂原子的电负性不同,因此预期的顺序相同,这证实了最富电子的环咪唑连接到MBI的苯环上。界面电荷转移电阻随金在硫醇溶液中浸入时间的变化而进行的比较表明,Au-MBT组装的动力学不同于其他两个动力学,并证实了通过MBT的两个硫原子形成了Au-MBT SAM。

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