4.5 Review

Copper and Copper-Based Bimetallic Catalysts for Carbon Dioxide Electroreduction

期刊

ADVANCED MATERIALS INTERFACES
卷 5, 期 24, 页码 -

出版社

WILEY
DOI: 10.1002/admi.201800919

关键词

bimetallic nanoparticle; carbon dioxide; electroreduction; reaction mechanism; reduction product

资金

  1. Ministry of Science and Technology (MoST) [106-2923-E 011-005, 105-3113-E-011-001, 105-ET-E-011-004-ET, 104-2923-M-011-002-MY3, 104-2911-1-011-505-MY2, 103-2221-E-011-156-MY3]
  2. Ministry of Economic Affairs (MoEA) [101-EC-17-A-08-S1-183]
  3. Global Networking Talent 3.0 Plan from the Ministry of Education of Taiwan [NTUST104DI005]
  4. Taiwan's Deep Decarbonization Pathways toward a Sustainable Society Project from Academia Sinica [106-0210-02-11-03]
  5. [100H45140]

向作者/读者索取更多资源

Among many alternatives, CO2 electroreduction (CO2ER) is an emerging technology to alleviate its level in the atmosphere and simultaneously to produce essential products containing high energy density using various electrocatalysts. Cu-based mono- and bimetallics are electrocatalysts of concerns in this work due to the material's abundance and versatility. Intrinsic factors affecting the CO2ER are first analyzed, whereby understanding and characterizing the surface features of electrocatalysts are addressed. An X-ray absorption spectroscopy-based methodology is discussed to determine electronic and structural properties of electrocatalyst surface which allows the prediction of reaction mechanism and establishing the correlation with reduction products. The selectivity and faradaic efficiency of products highly depend on the quality of surface modification. Preparation and modification of electrocatalyst surfaces through various techniques are critical to increase the number of activity sites and the corresponding site activity. Mechanisms of CO2ER are complicate and thus are discussed in accordance with main products of interests. The authors try to concisely compile the most interesting, recent, and reasonable ideas that are agreeable to experimental results. Finally, this review provides an outlook for designing better Cu and Cu-based bimetallic catalysts to obtain selective products through CO2ER.

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