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In situ UV-vis and CD thin-layer spectroelectrochemistry study of the electrochemical behavior of L-noradrenaline in alkaline solution

机译:L-去甲肾上腺素在碱性溶液中的电化学行为的原位紫外可见和CD薄层光谱电化学研究

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Electrochemical redox behavior of noradrenaline in alkaline solution on a glassy carbon electrode has been investigated by in situ UV-vis and CD spectroelectrochemistry by using a long optical path thin-layer cell. The experimental data were processed by using a double logarithmic method of analysis together with nonlinear regression which confirmed that the first step in both the oxidation of noradrenaline and reduction of noradrenochrome is a two-electron irreversible process governed by an EE mechanism. The kinetic parameters of the electrode reactions, i.e., charge transfer coefficient and the number of electrons transferred, alpha(1)n(1) = 0.11 and alpha(2)n(2) = 0.23, formal potentials modified with kinetics, E-1(0') = 0.65 (+/- 0.01) V and E-2(0') = 0.72V and standard rate cnstants, k(1)(0) = 7.0(+/-0.5)x10(-5) cm s(-1), for the first and second steps in the oxidation process of noradrenaline, and similarly, alpha(1)n(1) = 0.33, alpha(2)n(2) = 0.58, E-1(0') = 0.37(+/-0.01) V, E-0' = -0.25 (+/-0.01) V and k(1)(0) approximate to k(2)(0) = 1.06 (+/-0.05)x10(-4) cm s(-1) for the first and second steps in the reduction process of noradrenochrome were also determined. [References: 11]
机译:通过使用长光程薄层电池,通过原位UV-vis和CD光谱电化学研究了去甲肾上腺素在碱性溶液中在玻璃碳电极上的电化学氧化还原行为。通过使用双对数分析方法和非线性回归来处理实验数据,这证实了去甲肾上腺素氧化和去甲去甲诺兰色素还原的第一步是由EE机理控制的两电子不可逆过程。电极反应的动力学参数,即电荷转移系数和转移的电子数,alpha(1)n(1)= 0.11和alpha(2)n(2)= 0.23,用动力学修改的形式势,E- 1(0')= 0.65(+/- 0.01)V和E-2(0')= 0.72V和标准速率常数,k(1)(0)= 7.0(+/- 0.5)x10(-5) cm s(-1),用于去甲肾上腺素氧化过程的第一步和第二步,类似地,alpha(1)n(1)= 0.33,alpha(2)n(2)= 0.58,E-1(0 ')= 0.37(+/- 0.01)V,E-0'= -0.25(+/- 0.01)V和k(1)(0)近似于k(2)(0)= 1.06(+/- 0.05还确定了Noradrenochrome还原过程的第一步和第二步的)×10(-4)cm s(-1)。 [参考:11]

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