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铅电极上电聚合聚苯胺及其析氧电催化性能研究
引用本文:龙晋明,郭忠诚,朱晓云. 铅电极上电聚合聚苯胺及其析氧电催化性能研究[J]. 电镀与涂饰, 2006, 25(12): 18-22
作者姓名:龙晋明  郭忠诚  朱晓云
作者单位:昆明理工大学材料与冶金工程学院,云南,昆明,650093;昆明理工大学材料与冶金工程学院,云南,昆明,650093;昆明理工大学材料与冶金工程学院,云南,昆明,650093
摘    要:在苯胺-硫酸电解液中,采用电化学阳极氧化法在纯铅表面电沉积制备聚苯胺(PAn)膜层。探讨了苯胺电聚合过程的影响因素及其规律,并考察了所得Pb/PAn膜电极材料的析氧电催化特性。结果表明,在一定的恒电流密度下,聚苯胺的沉积量与时间成正比;与空白Pb电极相比,Pb/PAn膜电极的析氧电位负移0.13~0.36V,交换电流密度提高2~4个数量级,显示出良好的析氧电催化特性。作为析氧阳极,Pb/PAn膜电极在有色金属电解提取等方面具有潜在应用价值。

关 键 词:铅电极  聚苯胺  电聚合  析氧阳极  电催化
文章编号:1004-227X(2006)12-0018-05
收稿时间:2006-05-26
修稿时间:2006-05-262006-07-10

Electrosynthesis of polyaniline on lead electrode and its electrocatalytic characteristic
LONG Jin-ming,GUO Zhong-cheng,ZHU Xiao-yun. Electrosynthesis of polyaniline on lead electrode and its electrocatalytic characteristic[J]. Electroplating & Finishing, 2006, 25(12): 18-22
Authors:LONG Jin-ming  GUO Zhong-cheng  ZHU Xiao-yun
Affiliation:Faculty of Materials and Metallur- gy Engineering, Kunming University of Science and Technology , Kunming 650093, China
Abstract:A polyaniline(PAn) film was deposited onto pure lead in aqueous solutions containing sulfuric acid and aniline by electrochemical anodic oxidation.The influential factors and rules of the electro-polymerization process of aniline were discussed. The oxygen-evolution electrocatalytic performance of the Pb/PAn film electrodes was also investigated. The results indicate that the deposition mass of polyaniline is proportional to electrolysis time under a definite constant current density; Compared with those of blank Pb electrode, the oxygen-evolution potential of the Pb/PAn film electrodeis shifted by 0.13~0.36 V negatively and its exchange current density rises by two to four orders of magnitude, demonstrating the good oxygen-evolution electrocatalytic performance of the Pb/PAn electrode. As a kind of oxygen -evolution anode, the Pb/PAn film electrode has a potential application value in the electrowinning of non-ferrous metals and other related fields.
Keywords:lead electrode  polyaniline  electropolymerization  oxygen evolution anode  electrocatalysis
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