计时安培法
循环伏安法
氢气储存
化学
氢
电化学
无机化学
电极
化学工程
材料科学
有机化学
物理化学
工程类
作者
Lukáš Fusek,Valentín Briega‐Martos,Mária Minichová,Lukas Fromm,Evanie Franz,Juntao Yang,Andreas Görling,Karl J. J. Mayrhofer,Peter Wasserscheid,Serhiy Cherevko,Olaf Brummel,Jörg Libuda
标识
DOI:10.1021/acs.jpclett.3c03331
摘要
Electrochemically active liquid organic hydrogen carriers (EC-LOHCs) can be used directly in fuel cells; so far, however, they have rather low hydrogen storage capacities. In this work, we study the electrooxidation of a potential EC-LOHC with increased energy density, 1-cyclohexylethanol, which consists of two storage functionalities (a secondary alcohol and a cyclohexyl group). We investigated the product spectrum on low-index Pt single-crystal surfaces in an acidic environment by combining cyclic voltammetry, chronoamperometry, and in situ infrared spectroscopy, supported by density functional theory. We show that the electrooxidation of 1-cyclohexylethanol is a highly structure-sensitive reaction with activities Pt(111) ≫ Pt(100) > Pt(110). Most importantly, we demonstrate that 1-cyclohexylethanol can be directly converted to acetophenone, which desorbs from the electrode surface. However, decomposition products are formed, which lead to poisoning. If the latter side reactions could be suppressed, the electrooxidation of 1-cyclohexylethanol would enable the development of EC-LOHCs with greatly increased hydrogen storage capacities.
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