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Cu2O-Cu界面上的Cu+和Cu0协同促进电催化CO2还原高效和高选择性地生成C2+产物(英文)

Synergistic Cu+/Cu0 on Cu2O-Cu interfaces for efficient and selective C2+production in electrocatalytic CO2 conversion

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【作者】 王胜楠王丹田本强高响响韩璐钟洋宋舒畅王智立李亚平归家宁Marshet G.Sendeku张颖邝允孙晓明

【Author】 Shengnan Wang;Dan Wang;Benqiang Tian;Xiangxiang Gao;Lu Han;Yang Zhong;Shuchang Song;Zhili Wang;Yaping Li;Jianing Gui;Marshet G.Sendeku;Ying Zhang;Yun Kuang;Xiaoming Sun;Key Laboratory of Synthetic and Biological Colloids,Ministry of Education,School of Chemical and Material Engineering,Jiangnan University;State Key Laboratory of Chemical Resource Engineering,Beijing Advanced Innovation Center for Soft Matter Science and Engineering,College of Chemistry,Beijing University of Chemical Technology;Weichai Power Co.,Ltd.;Ocean Hydrogen Energy R&D Center,Research Institute of Tsinghua University in Shenzhen;

【通讯作者】 张颖;邝允;

【机构】 Key Laboratory of Synthetic and Biological Colloids,Ministry of Education,School of Chemical and Material Engineering,Jiangnan UniversityState Key Laboratory of Chemical Resource Engineering,Beijing Advanced Innovation Center for Soft Matter Science and Engineering,College of Chemistry,Beijing University of Chemical TechnologyWeichai Power Co.,Ltd.Ocean Hydrogen Energy R&D Center,Research Institute of Tsinghua University in Shenzhen

【摘要】 电催化CO2还原技术有望同时缓解化石燃料濒临枯竭及大气中CO2浓度不断攀升等问题.然而,对于高附加值的电催化CO2还原多碳产物的选择性提升,仍然面临巨大挑战.密度泛函理论(DFT)计算表明,Cu2O-Cu界面上Cu+和Cu0的协同耦合效应使其表面上*COCO中间体的生成能降低,同时H2O的解离自由能也降低,从而有利于电催化CO2还原高选择性生成多碳产物特别是C2H4.受DFT计算结果的启发,本文设计了一种氧化物衍生铜电极的活化策略,构建Cu2O-Cu界面,以Cu+和Cu0协同促进电催化CO2还原高效高选择性生成C2+产物.其中,Cu2O立方体被用作初始催化剂,经方波电位处理后,在Cu2O-Cu界面上形成了具有Cu+和Cu0协同作用的S W-Cu2O/Cu立方体.在H型电解池中,SW-Cu20/Cu电催化CO2还原生成C2H4和C2+产物的法拉第效率分别为60%和75%,约为前驱体Cu2O立方体的1.5倍,证明CuG和Cu+在Cu2O-Cu界面上的协同作用的确可提高电催化CO2还原过程中特定高附加值多碳产物的选择性.

【Abstract】 The electrocatalytic CO2 reduction technology is expected to simultaneously alleviate increasing CO2 emissions and the depletion of fossil resources.However,it is still a big challenge to improve the selectivity toward valuable multicarbon products in electrocatalytic CO2 reduction reaction.In this study,the synergistic role of Cu+and Cu0 species in Cu2OCu interfaces is unravelled through density functional theory(DFT)calculations,in which the electrode surface exhibits low free energy of *COCO intermediate formation and H2O dissociation,which are beneficial to the high selectivity towards multi-carbon products,especially C2H4.Guided by these DFT results,an oxide-derived copper electrode activation strategy that builds the synergistic Cu+and Cu0 on Cu2O-Cu interfaces is designed to boost the selectivity toward multi-carbon products.Interestingly,Cu2O cubes chosen as the pristine catalyst are activated via a square-wave(SW)potential treatment to form SW-Cu2O cubes that bear Cu+ and Cu0 species.The asprepared SW-Cu2O cubes exhibit superior Faradaic efficiencies for C2H4(60%)and C2+products(75%)in an H-type cell,which are about 1.5 times that of the Cu2O cubes.This study demonstrates the synergistic Cu0 and Cu+on Cu2O-Cu interfaces for improving the selectivity of a specific valuable multi-carbon product in electrocatalytic CO2 conversion.

【基金】 supported by the National Key Research and Development Project (2018YFB1502401 and 2018YFA0702002);the Program for Changjiang Scholars and Innovation Research Team in the University (IRT1205);the Fundamental Research Funds for the Central Universities;the long-term subsidy mechanism from the Ministry of Finance and the Ministry of Education of China
  • 【文献出处】 Science China(Materials) ,中国科学:材料科学(英文版) , 编辑部邮箱 ,2023年05期
  • 【分类号】TQ426;X701
  • 【下载频次】28
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