Highly selective and low-overpotential electrocatalytic CO2 reduction to ethanol by Cu-single atoms decorated N-doped carbon dots

Authors
Purbia, RahulChoi, Sung YeolWoo, Chae HeonJeon, JihoLim, ChulwanLee, Dong KiChoi, Jae YoungOh, Hyung-SukBaik, Jeong Min
Issue Date
2024-05
Publisher
Elsevier BV
Citation
Applied Catalysis B: Environment and Energy, v.345
Abstract
Selective, low-overpotential and high Faradaic efficiency electroreduction of CO2 to ethanol is in prominent global demand and lies in structuring, loading, and modulating the coordination states of Cu single atom catalysts (SACs) with support matrix. Here, the low -temperature (160(degrees) C) synthesis of Cu-SACs-N-doped carbons dots (Cu-SACs-N-CQDs) is reported via Cu-dopamine complex process. The optimized Cu-SACs-N-CQDs electrocatalyst brings remarkably high Faraday efficiency (> 80%) and selectivity for ethanol with 50 h operation stability, which far exceeds previous results in terms of overpotential, stability, and Faraday efficiency. Surprisingly, the Faraday efficiency and selectivity of ethanol are highly sensitive to the coordination states of copper SACs with variation of Cu loadings. Operando X-ray absorption spectroscopy indicates in situ -generated neighboring metallic Cu-Cu atom coordination as real catalytic active sites from isolated single Cu atom during CO2 reduction, which favors the ethanol selectivity.
Keywords
GENERAL TECHNOECONOMIC ANALYSIS; OXIDATION-STATE; COPPER(II) COMPLEXES; ELECTROREDUCTION; DOPAMINE; CATALYSTS; DIOXIDE; ETHYLENE; LIGANDS; ACETATE; Low-temperature; Single-atom catalyst; N-doped carbon dots; CO2 reduction; Ethanol
ISSN
0926-3373
URI
https://pubs.kist.re.kr/handle/201004/149286
DOI
10.1016/j.apcatb.2024.123694
Appears in Collections:
KIST Article > 2024
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