Tomboc Gracita M, Choi Songa, Kwon Taehyun, Hwang Yun Jeong, Lee Kwangyeol
Department of Chemistry and Research Institute for Natural Sciences, Korea University, Seoul, 02841, Republic of Korea.
Clean Energy Research Center, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea.
Adv Mater. 2020 Apr;32(17):e1908398. doi: 10.1002/adma.201908398. Epub 2020 Mar 5.
Electrochemical reduction of carbon dioxide (CO RR) product distribution has been identified to be dependent on various surface factors, including the Cu facet, morphology, chemical states, doping, etc., which can alter the binding strength of key intermediates such as *CO and *OCCO during reduction. Therefore, in-depth knowledge of the Cu catalyst surface and identification of the active species under reaction conditions aid in designing efficient Cu-based electrocatalysts. This progress report categorizes various Cu-based electrocatalysts into four main groups, namely metallic Cu, Cu alloys, Cu compounds (Cu + non-metal), and supported Cu-based catalysts (Cu supported by carbon, metal oxides, or polymers). The detailed mechanisms for the selective CO RR are presented, followed by recent relevant developments on the synthetic procedures for preparing Cu and Cu-based nanoparticles. Herein, the potential link between the Cu surface and CO RR performance is highlighted, especially in terms of the chemical states, but other significant factors such as defective sites and roughened morphology of catalysts are equally considered during the discussion of current studies of CO RR with Cu-based electrocatalysts to fully understand the origin of the significant enhancement toward C formation. This report concludes by providing suggestions for future designs of highly selective and stable Cu-based electrocatalysts for CO RR.
二氧化碳的电化学还原(CO RR)产物分布已被确定取决于各种表面因素,包括铜晶面、形态、化学状态、掺杂等,这些因素会改变还原过程中关键中间体如CO和OCCO的结合强度。因此,深入了解铜催化剂表面并识别反应条件下的活性物种有助于设计高效的铜基电催化剂。本进展报告将各种铜基电催化剂分为四大类,即金属铜、铜合金、铜化合物(铜+非金属)和负载型铜基催化剂(铜负载于碳、金属氧化物或聚合物上)。文中介绍了选择性CO RR的详细机理,随后阐述了制备铜和铜基纳米颗粒合成方法的最新相关进展。本文强调了铜表面与CO RR性能之间的潜在联系,特别是在化学状态方面,但在讨论当前基于铜的电催化剂的CO RR研究时,同样考虑了其他重要因素,如催化剂的缺陷位点和粗糙形态,以充分理解对碳生成显著增强的起源。本报告最后为未来设计用于CO RR的高选择性和稳定的铜基电催化剂提供了建议。