| 1 | | Nanotechnology for Energy Production | | 3 |
| 2 | | Nanotechnology in Dye-Sensitized Photoelectrochemical Devices | | 33 |
| 3 | | Thermal-Electrical Energy Conversion from the Nanotechnology Perspective | | 47 |
| 4 | | Nanomaterials for Fuel Cell Technologies | | 79 |
| 5 | | The Contribution of Nanotechnology to Hydrogen Production | | 111 |
| 6 | | Nanostructured Materials for Hydrogen Storage | | 139 |
| 7 | | Electrochemical Energy Storage: the Benefits of Nanomaterials | | 155 |
| 8 | | Carbon-Based Nanomaterials for Electrochemical Energy Storage | | 177 |
| 9 | | Nanomaterials for Superconductors from the Energy Perspective | | 205 |
| 10 | | Green Nanofabrication: Unconventional Approaches for the Conservative Use of Energy | | 231 |
| 11 | | Nanocatalysis for Fuel Production | | 281 |
| 12 | | Surface-Functionalized Nanoporous Catalysts Towards Biofuel Applications | | 319 |
| 13 | | Nanotechnology for Carbon Dioxide Capture | | 359 |
| 14 | | Nanostructured Organic Light-Emitting Devices | | 403 |
| 15 | | Electrochromic Materials and Devices for Energy Efficient Buildings | | 435 |
| | | Index | | 459 |