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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
【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.
【Key words】 Cu~+ and Cu~0; C–C coupling; CO2RR; Cu2O-Cu interfaces; square-wave;
- 【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