Environmental Engineering Reference
In-Depth Information
Conway, B.E., Bockris, J.O'M., White, R.E. (2002) Modern Aspects of Electrochemistry No.
32, Kluwer Acamdemic Publishers, New York, Boston, Dordrecht, London, Moscow.
Dobran, F. (2010) Energy supply options for climate change mitigation and sustainable devel-
opment. In: Proceedings of XXI World Energy Congress . 12-16 September, Montreal,
Canada.
Fujishima, A. and Honda, K. (1972) Electrochemical photolysis of water at a semiconductor
electrode. Nature , 238, 37-38.
Gadgil, P.N. (1990) Preparation of iron pyrite films for solar cells by metalorganic chemical
vapor deposition. Simon Fraser University.
Gärtner, W.W. (1959) Depletion-layer photoeffects in semiconductors. Physical Review , 116(1),
84-87.
Gerischer, H. (1977) On the stability of semiconductor electrodes against photodecomposition.
Journal of Electroanalytical Chemistry , 82, 133-143.
Glasscock, J.A., Barnes, P.R.F., Plumb, I.C. and Savvides, N. (2007) Enhancement of photoelec-
trochemical hydrogen production from hematite thin films by the introduction of Ti and Si.
The Journal of Physical Chemistry C , 111, 16477-16488.
Goodman, A.M. (1963) Metal-Semiconductor barrier height measurement by the differential
capacitance method - one carrier system. Journal of Applied Physics , 34, 329-338.
Grätzel, M. (2005) Solar energy conversion by dye-sensitized photovoltaic cells. Inorganic
Chemistry , 44, 6841-6851.
Grätzel, M. and Augustynski, J. (2001) Tandem Cell for Water Cleavage by Visible Light . Patent
No. WO/2001/002624.
Green, M.A., Emery , K., Hishikawa, Y. and Warta, W. (2008) Short communication solar
cell efficiency tables (Version 31). Progress in Photovoltaics: Research and Applications , 16,
61-67.
Grimes, C.A., Varghese, O.K. and Ranjan, S. (2008) Oxide semiconductors nano-crystalline
tubular and porous systems. In: Light, Water, Hydrogen . pp. 257-369, Springer: New York.
Grimes, C.A., Varghese, O.K. and Ranjan, S. (2008) Non-oxide semiconductor nanostructures.
In: Light, Water, Hydrogen . pp. 427-483, Springer: New York.
Grimes, C.A., Varghese, O.K. and Ranjan, S. (2008) The solar generation of hydrogen by water
photoelectrolysis. In: Light, Water, Hydrogen . pp. 115-190, Springer: New York.
Grimes, C.A., Varghese, O.K. and Ranjan, S. (2008) Photoelectrolysis. In: Light, Water,
Hydrogen . pp. 115-190, Springer: New York.
Grimes, C.A., Varghese, O.K., and Ranjan, S. (2008) Oxide semiconducting materials as
photoanodes. In: Light, Water, Hydrogen . pp. 191-255, Springer: New York.
Gomes, W.P. and Vanmaekelbergh, D. (1996) Impedance spectroscopy at semiconductor
electrodes: Review and recent developments. Electrochimica Acta , 41, 967-973.
Hara, M., Kondo , T., Komoda, M., Ikeda, S., N. Kondo, J., Domen, K., Shinohara, K. and
Tanaka, A. (1998) Cu 2 O as a photocatalyst for overall water splitting under visible light
irradiation. Chemical Communications , 3, 357-358.
Heaviside, O. http://www-groups.dcs.st-and.ac.uk/
history/Mathematicians/Heaviside.html.
Henry, C.H., Logan, R.A. and Merritt, F.R. (1978) The effect of surface recombination on
current in Al x Ga 1 x As heterojunctions. Journal of Applied Physics , 49, 3530-3542.
Hodes, G., Cahen, D. and Manassen, J. (1976) Tungsten trioxide as a photoanode for a
photoelectrochemical cell (PEC). Nature , 260, 312-313.
Horowitz, G. (1983) Capacitance-voltage measurements and flat-band potential determination
on Zr-doped
-Fe 2 O 3 single-crystal electrodes. Journal of Electroanalytical Chemistry and
Interfacial Electrochemistry , 159, 421-436.
Hu, Y.-S., Kleiman-Shwarsctein, A., Forman, A.J., Hazen, D., Park, J.-N. and McFarland,
E.W. (2008) Pt-Doped
α
-Fe 2 O 3 thin films active for photoelectrochemical water splitting.
Chemistry of Materials , 20, 3803-3805.
α
Search WWH ::




Custom Search