571 - 573 |
Solar energy - Special issue - Hydrogen energy Raissi AT, Sherif SA |
574 - 580 |
Visible light-induced hydrogen over CuFeO2 viaS(2)O(3)(2-) oxidation Younsi M, Aider A, Bouguelia A, Trari M |
581 - 592 |
Metal oxide photoelectrodes for hydrogen generation using solar radiation-driven water splitting Aroutiounian VM, Arakelyan VM, Shahnazaryan GE |
593 - 602 |
Solar-hydrogen: Unresolved problems in solid-state science Nowotny J, Sorrell CC, Bak T, Sheppard LR |
603 - 615 |
Solar thermochemical production of hydrogen - a review Steinfeld A |
616 - 622 |
Oxygen-releasing step of ZnFe2O4/(ZnO+Fe3O4)-system in air using concentrated solar energy for solar hydrogen production Tamaura Y, Kaneko H |
623 - 631 |
Thermochemical hydrogen production by a redox system of ZrO2-supported Co(II)-ferrite Kodama T, Kondoh Y, Yamamoto R, Andou H, Satou N |
632 - 646 |
Analysis of sulfur-iodine thermochemical cycle for solar hydrogen production. Part I: decomposition of sulfuric acid Huang CP, T-Raissi A |
647 - 660 |
Wind energy and the hydrogen economy - review of the technology Sherif SA, Barbir F, Veziroglu TN |
661 - 669 |
PEM electrolysis for production of hydrogen from renewable energy sources Barbir F |
670 - 677 |
Analysis of hydrogen production from combined photovoltaics, wind energy and secondary hydroelectricity supply in Brazil Da Silva EP, Neto AJM, Ferreira PFP, Camargo JC, Apolinario FR, Pinto CS |
678 - 686 |
The role of hydrogen for the long term development of sustainable energy systems - a case study for Germany Fischedick M, Nitsch J, Ramesohl S |
687 - 694 |
Efficiencies of hydrogen storage systems onboard fuel cell vehicles Ananthachar V, Duffy JJ |