首页> 外文期刊>Electrochimica Acta >Concatenation of electrochemical grafting with chemical or electrochemical modification for preparing electrodes with specific surface functionality
【24h】

Concatenation of electrochemical grafting with chemical or electrochemical modification for preparing electrodes with specific surface functionality

机译:电化学接枝与化学或电化学修饰的串联,以制备具有特定表面功能的电极

获取原文
获取原文并翻译 | 示例
           

摘要

Surface modified electrodes are used in electro-analysis, electro-catalysis, sensors, biomedical applications, etc. and could also be used in batteries. The properties of modified electrodes are determined by the surface functionality. Therefore, the steps involved in the surface modification of the electrodes to obtain specific functionality are of prime importance. We illustrate here bridging of two routes of surface modifications namely electrochemical grafting, and chemical or electrochemical reduction. First, by electrochemical grafting an organic moiety is covalently immobilized on the surface. Then, either by chemical or by electrochemical route the terminal functional group of the grafted moiety is transformed. Using the former route we prepared lithium alkyl carbonate (-O(CH_2)_3OCO_2Li) modified carbon with potential applications in batteries, and employing the latter we prepared phenyl hydroxyl amine (-C_6H_4NHOH) modified carbon which may find application in biosensors. Benzyl alcohol (-C_6H_4CH_2OH) modified carbon was prepared by both chemical as well as electrochemical route. We report combinations of conjugating the two steps of surface modifications and show how the optimal route of terminal functional group modification depends on the chemical nature of the moiety attached to the surface in the electrochemical grafting step.
机译:表面修饰的电极用于电分析,电催化,传感器,生物医学应用等,也可以用于电池。修饰电极的特性由表面功能决定。因此,电极表面改性以获得特定功能所涉及的步骤至关重要。我们在这里说明了两种表面修饰途径的桥接,即电化学接枝和化学或电化学还原。首先,通过电化学接枝将有机部分共价固定在表面上。然后,通过化学或电化学途径,使接枝部分的末端官能团转化。使用前一种方法,我们制备了碳酸锂烷基酯(-O(CH_2)_3OCO_2Li)改性碳,并有望在电池中应用;使用后一种方法,我们制备了苯基羟基胺(-C_6H_4NHOH)改性碳,有望在生物传感器中得到应用。通过化学和电化学途径制备了苯甲醇(-C_6H_4CH_2OH)改性的碳。我们报告共轭表面改性的两个步骤的组合,并显示末端官能团改性的最佳途径如何取决于在电化学接枝步骤中附着于表面的部分的化学性质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号