Literature DB >> 35507510

Bridge Sites of Au Surfaces Are Active for Electrocatalytic CO2 Reduction.

Zixu Tao1,2, Adam J Pearce1, James M Mayer1, Hailiang Wang1,2.   

Abstract

Prior in situ attenuated total reflectance Fourier transform infrared (ATR-FTIR) studies of electrochemical CO2 reduction catalyzed by Au, one of the most selective and active electrocatalysts to produce CO from CO2, suggest that the reaction proceeds solely on the top sites of the Au surface. This finding is worth updating with an improved spectroelectrochemical system where in situ IR measurements can be performed under real reaction conditions that yield high CO selectivity. Herein, we report the preparation of an Au-coated Si ATR crystal electrode with both high catalytic activity for CO2 reduction and strong surface enhancement of IR signals validated in the same spectroelectrochemical cell, which allows us to probe the adsorption and desorption behavior of bridge-bonded *CO species (*COB). We find that the Au surface restructures irreversibly to give an increased number of bridge sites for CO adsorption within the initial tens of seconds of CO2 reduction. By studying the potential-dependent desorption kinetics of *COB and quantifying the steady-state surface concentration of *COB under reaction conditions, we further show that *COB are active reaction intermediates for CO2 reduction to CO on this Au electrode. At medium overpotential, as high as 38% of the reaction occurs on the bridge sites.

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Year:  2022        PMID: 35507510      PMCID: PMC9158392          DOI: 10.1021/jacs.2c01098

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   16.383


  42 in total

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Review 4.  Defining a Materials Database for the Design of Copper Binary Alloy Catalysts for Electrochemical CO2 Conversion.

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7.  Highly Dense Cu Nanowires for Low-Overpotential CO2 Reduction.

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Journal:  Nano Lett       Date:  2015-09-15       Impact factor: 11.189

8.  Electrochemical CO2 Reduction to Hydrocarbons on a Heterogeneous Molecular Cu Catalyst in Aqueous Solution.

Authors:  Zhe Weng; Jianbing Jiang; Yueshen Wu; Zishan Wu; Xiaoting Guo; Kelly L Materna; Wen Liu; Victor S Batista; Gary W Brudvig; Hailiang Wang
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Authors:  Andreas Wagner; Khoa H Ly; Nina Heidary; István Szabó; Tamás Földes; Khaleel I Assaf; Steven J Barrow; Kamil Sokołowski; Mohamed Al-Hada; Nikolay Kornienko; Moritz F Kuehnel; Edina Rosta; Ingo Zebger; Werner M Nau; Oren A Scherman; Erwin Reisner
Journal:  ACS Catal       Date:  2019-11-20       Impact factor: 13.084

10.  Active sites of copper-complex catalytic materials for electrochemical carbon dioxide reduction.

Authors:  Zhe Weng; Yueshen Wu; Maoyu Wang; Jianbing Jiang; Ke Yang; Shengjuan Huo; Xiao-Feng Wang; Qing Ma; Gary W Brudvig; Victor S Batista; Yongye Liang; Zhenxing Feng; Hailiang Wang
Journal:  Nat Commun       Date:  2018-01-29       Impact factor: 14.919

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