High-Rate and Efficient Ethylene Electrosynthesis Using a Catalyst/Promoter/Transport Layer

Adnan Ozden, Fengwang Li, F. Pelayo Garcĺa De Arquer, Alonso Rosas-Hernández, Arnaud Thevenon, Yuhang Wang, Sung Fu Hung, Xue Wang, Bin Chen, Jun Li, Joshua Wicks, Mingchuan Luo, Ziyun Wang, Theodor Agapie, Jonas C. Peters, Edward H. Sargent, David Sinton*

*此作品的通信作者

研究成果: Article同行評審

81 引文 斯高帕斯(Scopus)

摘要

Carbon dioxide (CO2) electroreduction to valuable chemicals such as ethylene is an avenue to store renewable electricity and close the carbon cycle. Membrane electrode assembly (MEA) electrolyzers have attracted recent interest in light of their high stability and despite low productivity (a modest partial current density in CO2-to-ethylene conversion of approximately 100 mA cm-2). Here we present an adlayer functionalization catalyst design: a catalyst/tetrahydro-phenanthrolinium/ionomer (CTPI) interface in which the catalytically active copper is functionalized using a phenanthrolinium-derived film and a perfluorocarbon-based polymeric ionomer. We find, using electroanalytical tools and operando spectroscopies, that this hierarchical adlayer augments both the local CO2 availability and the adsorption of the key reaction intermediate CO on the catalyst surface. Using this CTPI catalyst, we achieve an ethylene Faradaic efficiency of 66% at a partial current density of 208 mA cm-2 - a 2-fold increase over the best prior MEA electrolyzer report - and an improved full-cell energy efficiency of 21%.

原文English
頁(從 - 到)2811-2818
頁數8
期刊ACS Energy Letters
DOIs
出版狀態Accepted/In press - 2020

指紋

深入研究「High-Rate and Efficient Ethylene Electrosynthesis Using a Catalyst/Promoter/Transport Layer」主題。共同形成了獨特的指紋。

引用此