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Title: Tin-doped bismuth dendrites for highly efficient electrocatalytic reduction of CO2 by using bipolar membrane in ultrathin liquid reactor
Authors: Peng, L 
Chen, C 
He, R
Xu, N
Qiao, J
Lin, Z 
Zhu, Y 
Huang, H 
Issue Date: Nov-2022
Source: EcoMat, Nov. 2022, v. 4, no. 6, e12260
Abstract: Electrochemical CO2 reduction reaction is a promising protocol to achieve a carbon-neutral cycle. Herein, we report a general strategy to regulate the growth of Sn-doped Bi dendritic electrode with numerous labyrinthine and porous channels to provide abundant tips, edges, terraces, and low coordination sites for efficient conversion of CO2 into formate. As a result, the dendritic Sn-doped Bi achieves a high partial current density (30 mA/cm2), a high Faradic efficiency of formate (95.5%), and a long-term durability (>60 h). Most remarkably, the self-made bipolar membrane can effectually prohibit the cross-over of formate from cathode to anode and the oxidization of small organic molecules in anode can promote the production of formate on both anode and cathode sides. This work provides helpful insights to the design of electrocatalysts, bipolar membrane, and ultrathin liquid reactor.
Keywords: Bipolar membrane
Dendritic morphology
Electrochemical CO2 reduction reaction
Sn-doped Bi electrode
ultrathin liquid reactor
Publisher: John Wiley & Sons
Journal: EcoMat 
EISSN: 2567-3173
DOI: 10.1002/eom2.12260
Rights: © 2022 The Authors. EcoMat published by The Hong Kong Polytechnic University and John Wiley & Sons Australia, Ltd.
This is an open access article under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
The following publication Peng, L., Chen, C., He, R., Xu, N., Qiao, J., Lin, Z., ... & Huang, H. (2022). Tin‐doped bismuth dendrites for highly efficient electrocatalytic reduction of CO2 by using bipolar membrane in ultrathin liquid reactor. EcoMat, 4(6), e12260 is available at https://doi.org/10.1002/eom2.12260.
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