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Adenine adsorption in different pH acetate buffer

机译:腺嘌呤在不同pH值的乙酸盐缓冲液中的吸附

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? Wroclaw University of Science and TechnologyThe research results facilitate the description of adenine adsorption on the mercury electrode with reference to the pH of the supporting electrolyte which was the acetate buffer with pH of 3, 4, 5 and 6. The thermodynamic analysis indicates that the curves of the differential capacity of the studied systems with adenine do not overlap with the curves for the supporting electrolyte – the acetate buffer. This indicates the occurrence of adsorption of the studied compound on the mercury electrode within the whole range of applied concentrations in the case of every tested pH value of the acetate buffer. Adsorption energy and interaction constants were determined using the Frumkin isotherm and the viral isotherm. It was demonstrated that a adenine molecule is adsorbed on the mercury electrode in a buffer with pH 4, 5 and 6 through the negative pole, whereas in a buffer with pH 3 through the positive pole. Physical adsorption was observed in the studied systems. This is indicated by the occurrence of a typical maximum on the curve of the relation the relative surface excess amounts and the potential of the electrode; crossed curves of the following relation surface charge of the electrode from its potential (surface charge of the electrode from its potential σ = f(E)) at one point and, thus, the possibility of determining electrical parameters characterizing maximum adsorption as well as the absence of linearity of the function free energy of adsorption as a function of electrode potential ΔG0 = f(E)
机译:? 研究成果促进的描述腺嘌呤吸附汞电极上支持电解质的pH值醋酸缓冲与pH值3,4,5和6。曲线的微分的能力研究系统与腺嘌呤不重叠支持电解质——的曲线醋酸缓冲。研究了汞的化合物的吸附电极在整个范围内的应用浓度对于每一个测试的pH值醋酸缓冲的价值。和交互使用常数测定Frumkin等温线和病毒等温线。证明是一个腺嘌呤分子吗汞电极上的吸附在一个缓冲区pH值为4、5、6在负极,而在与pH值3通过缓冲区正极。在研究系统。发生的一个典型的最大的曲线关系的相对表面多余的数量和电极的潜力;表面电荷曲线下面的关系其潜在的电极(表面电荷的电极从其潜在的σ=f (E))在一个点,因此,的可能性确定电气参数描述最大的吸附以及缺乏函数的线性自由能吸附电极电位的函数ΔG0 = f (E)

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