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Keyword [electrocatalytic reduction of CO2]
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1. Design And Synthesis Of Metal-oxygen Cluster Complexes And Their CO2 Reduction Properties
2. Spinel Co3O4 On N-doped Porous Carbon Derived From ZnCo ZIF Particles For Highly Selective Reduction Of CO2 To Formic Acid
3. Design And Synthesis Of Nitrogen-Containing Porphyrins And The Application In Photocatalytic And Electrocatalytic Systems
4. Ordered Mcsoporous Composites And Templated Carbon Materials:Design,Synthesis And Catalytic Performance
5. Synthesis Of Porphyrin-Based Conjugated Organic Polymers And The Application In Photocatalytic And Electrocatalytic Systems
6. Vacancy Defect And Cu Alloying Of Bi Metal For Improved Electrocatalytic Reduction Of CO2
7. Study On The Synthesis Of Metal-phthalocyanine Complexes And Their Performance Of Electrocatalytic Reduction Of CO2
8. CO2 Electrocatalvtic Reduction On Copper/Nitrogen-Doped Carbon Composites
9. The Preparation And Electrochemical Property Of LDH Films
10. The Controllable Synthesis Of Single Iron Atom Catalysts And Its Application For Electrocatalytic Reduction From CO2 To CO
11. Study On Preparation And Catalytic Performance Of Metal-organic Framework Derived High Dispersion Metal Catalysts
12. Preparation Of Ni-and Cu-based Electrocatalysts For High-efficiency CO2 Reduction
13. Detection And Research Of CO2·- Radical Produced In The Electrocatalytic Reduction Of CO2
14. Nitrogen-Doped Mesoporous Carbon Supported Cu-based Binary Metals For Electroreduction Of CO2
15. Preparation Of Copper/copper Oxide-based Catalysts And Electrocatalytic Of CO2
16. Study On The Mechanism Of Nitrogen-Doped Carbon-based Heteronuclear Diatomic Electrocatalytic Reduction Of CO2
17. Template Preparation Of Metal-nitrogen Co-doped Carbon Catalysts For CO2 Electroreduction
18. The Construction Of Nonmetal-metal Bicomponent Catalysts For Electrocatalytic CO2 Reduction
19. Facile Synthesis Of Nanostructure Ag(Au)/Cu2O By Galvanic Replacement Reaction And Electrochemical Reduction Of CO2
20. Synthesis And Electrocatalytic Performance Of Iron-based Antiperovskite Nitrides
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