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Crown ether functionalization boosts CO2 electroreduction to ethylene on copper-based MOFs

delete2025-01-01
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PRE
AI
X
Xuan Zheng
S
Siheng Yang
D
Dingwen Chen
K
Kong, Yuxuan
T
Tianhua Cui
X
Xueli Zheng
付海燕 cover
付海燕 (Haiyan Fu)
W
Weichao Xue
李爽 cover
李爽 (Shuang Li)
程冲 (Chong Cheng)
C
Chen, Hua
李瑞祥 cover
李瑞祥 (Ruixiang Li)
徐嘉麒 cover
徐嘉麒 (Jiaqi Xu) *
DOI:10.1039/d4cc06719cdelete
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Abstract

Abstract

En 中文
The electroconversion of CO2 into ethylene (C2H4) offers a promising solution to environmental and energy challenges. Crown ether (CE) modification significantly enhances the C2H4 selectivity of copper-based MOFs, improving C2H4 faradaic efficiency (FE) in CuBTC, CuBDC, and CuBDC-NH2 by 3.1, 1.7, and 2.4 times, respectively. Among these, CuBTC achieves the highest FE for C2H4, reaching ca. 52% at 120 mA cm-2. Control experiments and in situ Fourier transform infrared spectroscopy (FTIR) reveal that CE stabilizes Cu+ during the catalyst's in situ reconstruction, promoting the formation of Cu2O, which is more favorable for C2H4 production. Furthermore, CE increases the local concentration of K+ at the catalyst-electrolyte interface, enhancing *CO adsorption and facilitating C-C coupling reactions. This process promotes the formation of key intermediates, such as *CO*CO, *CO*COH and *COCHO, ultimately boosting C2H4 production.
Keywords:
METAL

Journal

Chemical Communications cover
Chemical Communications
IF:
4.2
Papers:
5.9W
Citations:
16.5W

Organization

S
sichuan university
Scholars:
11.9W
Papers: 7.7W
Citations: 100
M
ministry of education - china
Scholars:
2.5W
Papers: 1.0W
Citations: 13