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Adsorption of adenine on mercury electrode in acetate buffer at pH 5 and pH 6 and its effect on electroreduction of zinc ions

机译:pH 5和pH 6的醋酸盐缓冲液中汞电极上腺嘌呤的吸附及其对锌离子电还原的影响

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摘要

AbstractThe measurements of double-layer differential capacitance, zero charge potential, and surface tension at that potential allowed us to examine the adsorption properties of adenine on the mercury surface from the neat buffer solution, i.e., the acetate buffer at pH 5 and pH 6. The systems obtained at such pH values were close to physiological fluids in their characteristics. The adsorption energy and interaction constants were determined using Frumkin isotherm and virial isotherm. It was shown that the adenine molecule is adsorbed on the mercury electrode with its negative pole against the electrode surface. Using the cyclic voltammetry technique and measuring Faraday impedance, an increasing effect of adenine on the kinetics of zinc ion electroreduction was found. In both buffer solutions, the neutral adenine molecules can form on the surface of the working electrode, an unstable active complex with depolarizer ions, facilitating electron exchange.
机译:摘要双层差分电容,零电荷电势和在该电势下的表面张力的测量结果使我们能够检查腺嘌呤在纯缓冲溶液(即pH 5和pH 6的乙酸盐缓冲液)中在汞表面的吸附性能。在这样的pH值下获得的系统的特性接近于生理流体。使用Frumkin等温线和病毒等温线确定吸附能和相互作用常数。结果表明,腺嘌呤分子以其负极抵住电极表面的方式吸附在汞电极上。使用循环伏安法和测量法拉第阻抗,发现腺嘌呤对锌离子电还原动力学的影响增加。在两种缓冲溶液中,中性腺嘌呤分子均可在工作电极的表面形成具有去极化剂离子的不稳定活性复合物,从而促进电子交换。

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