Halide-guided active site exposure in bismuth electrocatalysts for selective CO2 conversion into formic acid

Publication date

2023-09

Authors

Yang, S. L.ISNI 0000000492960526
An, HongyuISNI 0000000506317479
Arnouts, Sven
Wang, Hui
Yu, Xiang
De Ruiter, JimISNI 0000000506363301
Bals, Sara
Altantzis, ThomasISNI 0000000512489496
Weckhuysen, Bert M.ORCID 0000-0001-5245-1426ISNI 0000000110540180
van der Stam, WardISNI 0000000443863316

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Advisors

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Document Type

Article
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cc_by

Abstract

It remains a challenge to identify the active sites of bismuth catalysts in the electrochemical CO2 reduction reaction. Here we show through in situ characterization that the activation of bismuth oxyhalide electrocatalysts to metallic bismuth is guided by the halides. In situ X-ray diffraction results show that bromide promotes the selective exposure of planar bismuth surfaces, whereas chloride and iodide result in more disordered active sites. Furthermore, we find that bromide-activated bismuth catalysts outperform the chloride and iodide counterparts, achieving high current density (>100 mA cm–2) and formic acid selectivity (>90%), suggesting that planar bismuth surfaces are more active for the electrochemical CO2 reduction reaction. In addition, in situ X-ray absorption spectroscopy measurements reveal that the reconstruction proceeds rapidly in chloride-activated bismuth and gradually when bromide is present, facilitating the formation of ordered planar surfaces. These findings show the pivotal role of halogens on selective facet exposure in activated bismuth-based electrocatalysts during the electrochemical CO2 reduction reaction. [Figure not available: see fulltext.]

Keywords

Carbon-dioxide, Challenges, Electrochemical co2, Electrodes, Electroreduction, Formate, Light, Mechanism, Nanosheets, Reduction, Catalysis, Bioengineering, Biochemistry, Process Chemistry and Technology

Citation

Yang, S, An, H, Arnouts, S, Wang, H, Yu, X, de Ruiter, J, Bals, S, Altantzis, T, Weckhuysen, B M & van der Stam, W 2023, 'Halide-guided active site exposure in bismuth electrocatalysts for selective CO2 conversion into formic acid', Nature Catalysis, vol. 6, no. 9, 6, pp. 796–806 . https://doi.org/10.1038/s41929-023-01008-0