首页|期刊导航|国家科学评论(英文版)|Molecularly engineered covalent hydrophobic interface for enhanced CO2 electromethanation in strong acid
Molecularly engineered covalent hydrophobic interface for enhanced CO2 electromethanation in strong acid
Chang Zhu Zhongjian Li Bin Yang Xiahan Sang Lecheng Lei Fei Song Paolo Samorì Yang Hou Dashuai Wang Nengji Liu Weixiao Lin Libin Zeng Yaqi Chen Wanzhen Zheng Xianyun Peng Guanghui Feng
国家科学评论(英文版)2026,Vol.13Issue(9):121-132,12.
国家科学评论(英文版)2026,Vol.13Issue(9):121-132,12.DOI:10.1093/nsr/nwag116
Molecularly engineered covalent hydrophobic interface for enhanced CO2 electromethanation in strong acid
Molecularly engineered covalent hydrophobic interface for enhanced CO2 electromethanation in strong acid
摘要
关键词
CO2 electroreduction/acidic electrolyte/methane/covalent hydrophobic interface/single-pass carbon efficiencyKey words
CO2 electroreduction/acidic electrolyte/methane/covalent hydrophobic interface/single-pass carbon efficiency引用本文复制引用
Chang Zhu,Zhongjian Li,Bin Yang,Xiahan Sang,Lecheng Lei,Fei Song,Paolo Samorì,Yang Hou,Dashuai Wang,Nengji Liu,Weixiao Lin,Libin Zeng,Yaqi Chen,Wanzhen Zheng,Xianyun Peng,Guanghui Feng..Molecularly engineered covalent hydrophobic interface for enhanced CO2 electromethanation in strong acid[J].国家科学评论(英文版),2026,13(9):121-132,12.基金项目
This work was supported by the development project of Zhejiang Province's 'Jianbing'and'Lingyan'(2023C01226),the National Natural Science Foundation of China(U22A20432,22425805,22278364,22211530045,22208296,22238008 and 22578393),the China Postdoctoral Science Foundation(GZC20232272),the Fundamental Research Funds for the Central Universities(226-2024-00060),the Key Technology Breakthrough Program of Ningbo'Science and Innovation Yongjiang 2035'(2024H024)and the Zhejiang Provincial Natural Science Foundation of China(LD25B060001). (2023C01226)