Nam Dae-Hyun, De Luna Phil, Rosas-Hernández Alonso, Thevenon Arnaud, Li Fengwang, Agapie Theodor, Peters Jonas C, Shekhah Osama, Eddaoudi Mohamed, Sargent Edward H
Department of Electrical and Computer Engineering, University of Toronto, Toronto, Ontario, Canada.
Department of Materials Science and Engineering, University of Toronto, Toronto, Ontario, Canada.
Nat Mater. 2020 Mar;19(3):266-276. doi: 10.1038/s41563-020-0610-2. Epub 2020 Feb 25.
The electrocatalytic carbon dioxide reduction reaction (CORR) addresses the need for storage of renewable energy in valuable carbon-based fuels and feedstocks, yet challenges remain in the improvement of electrosynthesis pathways for highly selective hydrocarbon production. To improve catalysis further, it is of increasing interest to lever synergies between heterogeneous and homogeneous approaches. Organic molecules or metal complexes adjacent to heterogeneous active sites provide additional binding interactions that may tune the stability of intermediates, improving catalytic performance by increasing Faradaic efficiency (product selectivity), as well as decreasing overpotential. We offer a forward-looking perspective on molecularly enhanced heterogeneous catalysis for CORR. We discuss four categories of molecularly enhanced strategies: molecular-additive-modified heterogeneous catalysts, immobilized organometallic complex catalysts, reticular catalysts and metal-free polymer catalysts. We introduce present-day challenges in molecular strategies and describe a vision for CORR electrocatalysis towards multi-carbon products. These strategies provide potential avenues to address the challenges of catalyst activity, selectivity and stability in the further development of CORR.
电催化二氧化碳还原反应(CORR)满足了将可再生能源存储在有价值的碳基燃料和原料中的需求,但在改进用于高选择性生产碳氢化合物的电合成途径方面仍存在挑战。为了进一步提高催化性能,利用多相和均相方法之间的协同作用变得越来越重要。与多相活性位点相邻的有机分子或金属配合物提供了额外的结合相互作用,这可能会调节中间体的稳定性,通过提高法拉第效率(产物选择性)以及降低过电位来改善催化性能。我们提供了关于分子增强多相催化CORR的前瞻性观点。我们讨论了四类分子增强策略:分子添加剂改性的多相催化剂、固定化有机金属配合物催化剂、网状催化剂和无金属聚合物催化剂。我们介绍了分子策略目前面临的挑战,并描述了CORR电催化制备多碳产物的愿景。这些策略为解决CORR进一步发展中催化剂活性、选择性和稳定性的挑战提供了潜在途径。