Skip to content

Mass‐Spectrometric Imaging of Electrode Surfaces—a View on Electrochemical Side Reactions

MetadataDetails
Publication Date2020-07-28
JournalAngewandte Chemie International Edition
AuthorsJens Fangmeyer, Arne Behrens, Barbara Gleede, Siegfried R. Waldvogel, Uwe Kärst
InstitutionsUniversity of Münster, Johannes Gutenberg University Mainz
Citations24

Abstract Electrochemical side reactions, often referred to as “electrode fouling”, are known to be a major challenge in electro‐organic synthesis and the functionality of modern batteries. Often, polymerization of one or more components is observed. When reaching their limit of solubility, those polymers tend to adsorb on the surface of the electrode, resulting in a passivation of the respective electrode area, which may impact electrochemical performance. Here, matrix‐assisted laser‐desorption/ionization mass spectrometry (MALDI‐MS) is presented as valuable imaging technique to visualize polymer deposition on electrode surfaces. Oligomer size distribution and its dependency on the contact time were imaged on a boron‐doped diamond (BDD) anode of an electrochemical flow‐through cell. The approach allows to detect weak spots, where electrode fouling may take place and provides insight into the identity of side‐product pathways.