Möller Sandra, Barwe Stefan, Masa Justus, Wintrich Daniela, Seisel Sabine, Baltruschat Helmut, Schuhmann Wolfgang
Analytical Chemistry-Center for Electrochemical Sciences-CES, Faculty of Chemistry and Biochemistry, Ruhr University Bochum, Universitätsstrasse 150, 44780, Bochum, Germany.
Institute for Physical and Theoretical Chemistry, University of Bonn, Römerstrasse 164, 53117, Bonn, Germany.
Angew Chem Int Ed Engl. 2020 Jan 20;59(4):1585-1589. doi: 10.1002/anie.201909475. Epub 2019 Dec 4.
Carbon corrosion at high anodic potentials is a major source of instability, especially in acidic electrolytes and impairs the long-term functionality of electrodes. In-depth investigation of carbon corrosion in alkaline environment by means of differential electrochemical mass spectrometry (DEMS) is prevented by the conversion of CO into CO . We report the adaptation of a DEMS system for online CO detection as the product of carbon corrosion in alkaline electrolytes. A new cell design allows for in situ acidification of the electrolyte to release initially dissolved CO as CO in front of the DEMS membrane and its subsequent detection by mass spectrometry. DEMS studies of a carbon-supported nickel boride (Ni B/C) catalyst and Vulcan XC 72 at high anodic potentials suggest protection of carbon in the presence of highly active oxygen evolution electrocatalysts. Most importantly, carbon corrosion is decreased in alkaline solution.
在高阳极电位下的碳腐蚀是不稳定性的主要来源,特别是在酸性电解质中,并且会损害电极的长期功能。由于CO会转化为CO₂,因此无法通过差分电化学质谱法(DEMS)对碱性环境中的碳腐蚀进行深入研究。我们报道了一种DEMS系统的改进,用于在线检测作为碱性电解质中碳腐蚀产物的CO。一种新的电池设计允许对电解质进行原位酸化,以便在DEMS膜前将最初溶解的CO₂以CO的形式释放出来,并随后通过质谱法进行检测。对碳负载硼化镍(Ni₂B/C)催化剂和Vulcan XC 72在高阳极电位下的DEMS研究表明,在高活性析氧电催化剂存在的情况下,碳受到了保护。最重要的是,碱性溶液中的碳腐蚀减少了。