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關于太陽能電池的一篇綜述
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Introduction to Solar Photon Conversion Solar Water Splitting Cells Contents 1. Introduction 6446 2. Photoelectrolysis 6448 2.1. Theoretical Efficiencies for Water Splitting Cells 6448 2.2. Calculation of Solar-to-Chemical Conversion Efficiencies 6450 2.3. Photoelectrolysis Cell Configurations 6451 3. Semiconductor Photoelectrochemistry 6452 3.1. Physics of Semiconductor/Liquid Contacts 6452 3.2. Optimization of Interfacial Energetics for Photoelectrolysis Systems 6453 3.3. Energetics of Semiconductor/Liquid Junctions under Illumination 6454 4. Photocathodes for Hydrogen Evolution 6455 4.1. Photocathode Materials 6456 4.2. Effects of Catalyst Particles on Photocathode Surfaces 6456 5. Photoanodes for Water Splitting 6457 5.1. Transition Metal Oxides as Photoanodes 6458 5.2. Photoanode-Based Unassisted Water Splitting 6458 5.3. Photoanodes with a Response to Visible Light 6458 5.4. Factors Leading to Improved Photoanode Performance 6459 6. Dual Band Gap Solar Water Splitting Cells 6460 6.1. p/n-Photoelectrolysis Cells 6460 6.2. Photoanode - Photovoltaic Cells 6461 6.3. Photocathode - Photovoltaic Cells 6461 6.4. Photovoltaic - Photoelectrolysis Cells 6462 7. Effects of Surface-Attached Catalysts on Photoelectrodes for Water Splitting 6463 7.1. Electrocatalysis for Solar Water Splitting 6463 7.2. Mechanism and Theory of the Hydrogen Evolution Reaction 6464 7.3. Catalyst Materials for Hydrogen Evolution 6465 7.4. Stability of Catalysts for Hydrogen Evolution 6466 7.5. Materials and Mechanism for the Oxygen Evolution Reaction 6466 7.6. Theory for the Activity of Oxygen Evolution Catalysts 6467 7.7. Catalyst Materials for Oxygen Evolution 6467 7.8. Stability of Catalysts for Oxygen Evolution 6468 7.9. Applications of Electrocatalysts to Solar Water Splitting 6468 8. Micro- and Nanostructural Effects on the Efficiency of Photoelectrodes 6469 9. Summary 6470 10. Abbreviations 6470 11. Acknowledgments 6471 12. References 6471 http://good.gd/1143380.htm |
先進材料 | thin film solar cell |
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