铜
电化学
还原(数学)
催化作用
材料科学
无机化学
化学
冶金
电极
物理化学
数学
有机化学
几何学
作者
Manova Santhosh Yesupatham,Brahmari Honnappa,Nithish Agamendran,Sai Yeswanth kumar,Gayathri Chellasamy,Saravanan Govindaraju,Kyusik Yun,N. Clament Sagaya Selvam,Arthanareeswari Maruthapillai,Wei Li,Karthikeyan Sekar
标识
DOI:10.1002/adsu.202300549
摘要
Abstract The drastic climate change imposing adverse environmental effects receives serious research attention for finding a suitable solution. The replacement of conventional fossil energy sources with renewable and sustainable energy sources is the potential route; and thus, manifests as a viable solution. Accordingly, the electrocatalytic carbon dioxide (CO 2 ) reduction process coupled with the renewable energy source is an emerging strategy for adopting a sustainable approach. However, the existing challenges in designing suitable catalyst, support material, electrolyte, inadequate selectivity, and intermediate reactions of CO 2 reduction demand substantial research advancement. Numerous studies reported for the CO 2 reduction process highlight the importance of catalyst design and product selectivity. Importantly, the copper‐based catalysts, capable in the output of multi‐carbon products, are reported as a “star” material. This review; therefore, focuses on catalyst design strategies, unique structural/morphological features, and product selectivity of diverse copper‐based catalysts. The outstanding findings of copper‐based catalysts and the corresponding products are critically discussed with adequate figures of merits. The impact of structural/morphological features on product selectivity is discussed in detail. The future scope and author perspectives on copper‐based catalysts for the feasible electrocatalytic CO 2 reduction application are summarized.
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