MXene-Based Photocatalysts
portes grátis
MXene-Based Photocatalysts
Fabrication and Applications
Qin, Zuzeng; Ji, Hongbing; Su, Tongming
Taylor & Francis Ltd
02/2022
212
Dura
Inglês
9780367742904
15 a 20 dias
571
Descrição não disponível.
1. Introduction 2. Preparation Method for MXene 3. Morphology and Microstructure of MXene 4. Property of MXene 5. Construction of MXene-Based Photocatalysts 6. Application of MXene-Based Photocatalyst for Photocatalytic Water-Splitting 7. Application of MXene-Based Photocatalyst for Photocatalytic CO2 Reduction 8. Application of MXene-Based Photocatalyst for Photocatalytic Degradation 9. Application of MXene-Based Photocatalyst in Other Photocatalytic Fields
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2D materials;2D transition;metal carbides and nitrides;energy materials;photocatalytic water splitting;photocatalytic;Co2 reduction;photocatalytic degradation;photocatalytic nitrogen fixation;Max Phase;photocatalytic H2O2 production;Anatase TiO;Photo-generated Electrons;Photogenerated Electrons;Photogenerated Charge Carriers;Al Layer;Photogenerated Electron Hole Pairs;Light Absorption Capacity;Photo-induced Electron;Photoinduced Electrons;Photocatalytic Performance;Visible Light Irradiation;Photocatalytic Activity;Photocatalytic Hydrogen Evolution;Photocatalytic Hydrogen Production;EDS Elemental Mapping;HF Etching;Transition Metals;Schottky Junction;Heterojunction Photocatalyst;Typical SEM Micrographs;Photo-induced Electron Transfer Process;High Magnification SEM Image
1. Introduction 2. Preparation Method for MXene 3. Morphology and Microstructure of MXene 4. Property of MXene 5. Construction of MXene-Based Photocatalysts 6. Application of MXene-Based Photocatalyst for Photocatalytic Water-Splitting 7. Application of MXene-Based Photocatalyst for Photocatalytic CO2 Reduction 8. Application of MXene-Based Photocatalyst for Photocatalytic Degradation 9. Application of MXene-Based Photocatalyst in Other Photocatalytic Fields
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
2D materials;2D transition;metal carbides and nitrides;energy materials;photocatalytic water splitting;photocatalytic;Co2 reduction;photocatalytic degradation;photocatalytic nitrogen fixation;Max Phase;photocatalytic H2O2 production;Anatase TiO;Photo-generated Electrons;Photogenerated Electrons;Photogenerated Charge Carriers;Al Layer;Photogenerated Electron Hole Pairs;Light Absorption Capacity;Photo-induced Electron;Photoinduced Electrons;Photocatalytic Performance;Visible Light Irradiation;Photocatalytic Activity;Photocatalytic Hydrogen Evolution;Photocatalytic Hydrogen Production;EDS Elemental Mapping;HF Etching;Transition Metals;Schottky Junction;Heterojunction Photocatalyst;Typical SEM Micrographs;Photo-induced Electron Transfer Process;High Magnification SEM Image