Bi2O3/BiO2 Nanoheterojunction for Highly Efficient Electrocatalytic CO2 Reduction to Formate
- Authors
- Feng, Xuezhen; Zou, Haiyuan; Zheng, Renji; Wei, Wenfei; Wang, Ranhao; Zou, Wensong; Lim, Gukhyun; Hong, Jihyun; Duan, Lele; Chen, Hong
- Issue Date
- 2022-02
- Publisher
- American Chemical Society
- Citation
- Nano Letters, v.22, no.4, pp.1656 - 1664
- Abstract
- Heterostructure engineering plays a vital role in regulating the material interface, thus boosting the electron transportation pathway in advanced catalysis. Herein, a novel Bi2O3/BiO2 heterojunction catalyst was synthesized via a molten alkali-assisted dealumination strategy and exhibited rich structural dynamics for an electrocatalytic CO2 reduction reaction (ECO2RR). By coupling in situ X-ray diffraction and Raman spectroscopy measurements, we found that the as-synthesized Bi2O3/BiO2 heterostructure can be transformed into a novel Bi/BiO2 Mott-Schottky heterostructure, leading to enhanced adsorption performance for CO2 and *OCHO intermediates. Consequently, high selectivity toward formate larger than 95% was rendered in a wide potential window along with an optimum partial current density of -111.42 mA cm(-2) that benchmarked with the state-of-the-art Bi-based ECO2RR catalysts. This work reports the construction and fruitful structural dynamic insights of a novel heterojunction electrocatalyst for ECO2RR, which paves the way for the rational design of efficient heterojunction electrocatalysts for ECO2RR and beyond.
- Keywords
- ELECTROCHEMICAL REDUCTION; FORMIC-ACID; FUEL-CELL; BI; ELECTROREDUCTION; DESIGN; SYSTEM; SN; Dealumination; Heterojunction; CO2 Reduction; Structure Evolution; Bismuth Oxides
- ISSN
- 1530-6984
- URI
- https://pubs.kist.re.kr/handle/201004/115641
- DOI
- 10.1021/acs.nanolett.1c04683
- Appears in Collections:
- KIST Article > 2022
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