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Development of differential electrochemical mass spectrometry (DEMS) technique for electrocatalysis studies

机译:用于电催化研究的差分电化学质谱(DEMS)技术的发展

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摘要

The initial target was to develop an electrocatalyst for electrochemical reduction of CO2 to selectively produce ethylene. An in-situ mass spectrometric technique namely Differential Electrochemical Mass Spectrometry (DEMS) was used for the study. Majority time was spent on CO2 reduction. Various strategies have been explored including alloy catalysts, modified Cu electrodes, increasing CO2 solubility using monoethanolamine solutions, ionic liquids to bypass the high activation energy requiring pathway and using guanidinium salts to stabilize intermediates. During the CO2 reduction project, certain limitations were felt using the DEMS technique which includes no control of/ low CO2 supply to electrocatalyst and inability to detect non-volatile products like formic acid. So in the thesis project \u22Development of DEMS technique for electrocatalysis studies\u22, the identified limitations of DEMS technique were eliminated to fulfill the CO2 reduction experiment requirements. An enhanced version of DEMS was developed by integrating capabilities of enhancement and control of reactant supply to the electrocatalyst by using an impinging jet and detection of non-volatile products produced using an additional electrochemical ring detector.
机译:最初的目标是开发一种电化学还原CO2以选择性生产乙烯的电催化剂。本研究采用现场质谱技术,即差分电化学质谱法(DEMS)。大部分时间都花在减少二氧化碳上。已经探索了各种策略,包括合金催化剂,修饰的Cu电极,使用单乙醇胺溶液提高CO2溶解度,使用离子液体绕过需要高活化能的途径以及使用胍盐来稳定中间体。在减少二氧化碳的项目中,使用DEMS技术感觉到某些局限性,包括无法控制/向电催化剂的二氧化碳供应低/无法检测不挥发的产物(例如甲酸)。因此,在论文项目\ DEMS技术用于电催化研究的开发\ u22中,消除了DEMS技术已确定的局限性,以满足了CO2还原实验的要求。开发了DEMS的增强版本,通过集成使用冲击射流增强和控制向电催化剂的反应物供应以及使用附加的电化学环检测器检测产生的非挥发性产品的功能。

著录项

  • 作者

    Venkatachalam, Subramanian;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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