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二茂铁的电化学氧化:对非极性溶剂中支持电解质浓度的强烈依赖性。

Electrochemical oxidation of ferrocene: a strong dependence on the concentration of the supporting electrolyte for nonpolar solvents.

作者信息

Bao Duoduo, Millare Brent, Xia Wei, Steyer Benjamin G, Gerasimenko Alexander A, Ferreira Amy, Contreras Antonio, Vullev Valentine I

机构信息

Department of Bioengineering, University of California, Riverside, California 92521, USA.

出版信息

J Phys Chem A. 2009 Feb 19;113(7):1259-67. doi: 10.1021/jp809105f.

Abstract

The estimation of the driving force for photoinduced charge-transfer processes, using the Rehm-Weller equation, requires the employment of redox and spectroscopic quantities describing the participating electron donor and acceptor. Although the spectroscopic data are usually obtained from diluted solutions, the redox potentials are most frequently obtained from electrochemical measurements conducted in concentrated electrolyte solutions. To correct for the differences in the media, in which the various types of measurements are conducted, a term, based on the Born equation for solvation energy of ions, is introduced in the Rehm-Weller equation. The Born correction term, however, requires a prior knowledge of the dielectric constants of the electrolyte solutions used for the redox measurements. Because of limited information for such dielectrics, the values for the dielectric constants of electrolyte solutions are approximated to the values of the dielectric constants of the corresponding neat solvents. We examined the validity of this approximation. Using cyclic voltammetry, we recorded the first one-electron oxidation potential of ferrocene for three different solvents in the presence of 1-500 mM supporting electrolyte. The dielectric constants for some of the electrolyte solutions were extracted from fluorescence measurements of a dimethylaminonaphthalimide chromophore that exhibits pronounced solvatochromism. The dielectric constants of the concentrated electrolyte solutions correlated well with the corresponding oxidation potentials. The dependence of the oxidation potential of ferrocene on the electrolyte concentration for different solvents revealed that the abovementioned approximation in the Born correction term indeed introduces a significant error in the estimation of the charge-transfer driving force from redox data collected using relatively nonpolar solvents.

摘要

使用雷姆-韦勒方程估算光致电荷转移过程的驱动力,需要使用描述参与反应的电子供体和受体的氧化还原及光谱学量。尽管光谱数据通常是从稀溶液中获得的,但氧化还原电位最常从在浓电解质溶液中进行的电化学测量中获得。为了校正进行各种测量的介质差异,基于离子溶剂化能的玻恩方程,在雷姆-韦勒方程中引入了一项。然而,玻恩校正项需要事先知道用于氧化还原测量的电解质溶液的介电常数。由于关于此类电介质的信息有限,电解质溶液的介电常数的值被近似为相应纯溶剂的介电常数的值。我们检验了这种近似的有效性。使用循环伏安法,我们记录了在1 - 500 mM支持电解质存在下,二茂铁在三种不同溶剂中的首个单电子氧化电位。一些电解质溶液的介电常数是从表现出明显溶剂化显色作用的二甲基氨基萘二甲酰亚胺发色团的荧光测量中提取的。浓电解质溶液的介电常数与相应的氧化电位相关性良好。二茂铁的氧化电位对不同溶剂中电解质浓度的依赖性表明,玻恩校正项中的上述近似确实在根据使用相对非极性溶剂收集的氧化还原数据估算电荷转移驱动力时引入了显著误差。

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