电化学
铜
化学
协调球
无机化学
金属
丙氨酸
扩展X射线吸收精细结构
甘氨酸
配位复合体
缬氨酸
电极
氨基酸
物理化学
有机化学
吸收光谱法
生物化学
物理
量子力学
作者
Paola Pary,Leandro Nicolás Bengoa,L.A. Azpeitia,Pablo Ricardo Seré,J. Lopez,A.E. Bolzán,Walter Alfredo Egli
标识
DOI:10.1149/1945-7111/abd92b
摘要
Basic electrochemical studies of coordination complexes between cupric ions and simple amino acids as ligands (L), namely glycine, alanine and valine, have been carried out to provide insight in the effect of complexation on Cu 2+ discharge electrochemistry. The results show that there are strong differences in their cyclic voltammograms, despite the similarities in coordination equilibrium, central atom d electronic structure and inner sphere coordination distances (verified by chemical equilibrium quantification, UV spectroscopy and EXAFS). Evidence of mass transport limitations by diffusion of the neutral CuL 2 complexes in solution, and cuprous species generation on the electrode during copper electrodeposition was found, both of which proved to be the main phenomena accounting for the different electrochemical behaviour previously mentioned. Voltammetric studies also showed that, surprisingly, cuprous species are produced not only at the onset of copper electroreduction but at more cathodic potentials. Furthermore, results suggest the existence of a cuprous compound layer beneath the metallic copper deposit. The data gathered in this investigation, leads to the conclusion that the bigger molecular size and organic nature of the ligands induce unexpected processes on the copper electroreduction mechanism.
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