Wu Yanlin, Klein Volker, Killian Manuela S, Behling Christopher, Chea Sany, Tsogoeva Svetlana B, Bachmann Julien
Department of Chemistry and Pharmacy, Chair of Thin Film Materials Chemistry, Friedrich-Alexander-Universität Erlangen-Nürnberg, Egerlandstrasse 1, 91058 Erlangen, Germany.
Department of Chemistry and Pharmacy, Organic Chemistry Chair I and Interdisciplinary Center for Molecular Materials (ICMM), Friedrich-Alexander-Universität Erlangen-Nürnberg, Nikolaus-Fiebiger-Strasse 10, 91058 Erlangen, Germany.
ACS Omega. 2018 Mar 31;3(3):2602-2608. doi: 10.1021/acsomega.7b01982. Epub 2018 Mar 5.
Despite the growing need for readily available and inexpensive catalysts for the half-reactions involved in water splitting, water oxidation and reduction electrocatalysts are still traditionally based on noble metals. One long-standing challenge has been the development of an oxygen evolution reaction catalyzed by easily available, structurally simple, and purely organic compounds. Herein, we first generalize the performance of the known -ethyl-flavinium ion to a number of derivatives. Furthermore, we demonstrate an unprecedented application of different pyridinium and related salts as very simple, inexpensive water oxidation organocatalysts consisting of earth-abundant elements (C, H, O, and N) exclusively. The results establish the prospects of heterocyclic aromatics for further design of new organic electrocatalysts for this challenging oxidation reaction.
尽管对用于水分解相关半反应的易于获得且廉价的催化剂的需求不断增长,但水氧化和还原电催化剂传统上仍基于贵金属。一个长期存在的挑战是开发由易于获得、结构简单且纯有机化合物催化的析氧反应。在此,我们首先将已知的 - 乙基黄酮离子的性能推广到多种衍生物。此外,我们展示了不同吡啶鎓盐及相关盐作为非常简单、廉价的水氧化有机催化剂的前所未有的应用,这些催化剂仅由地球上丰富的元素(碳、氢、氧和氮)组成。这些结果为进一步设计用于这一具有挑战性的氧化反应的新型有机电催化剂奠定了杂环芳烃的前景。