Environmental Engineering Reference
In-Depth Information
Meda, L., Tozzola, G., Tacca, A., Marra, G., Caramori, S., Cristino, V. and Alberto Bignozzi,
C. (2010) Photo-electrochemical properties of nanostructured WO 3 prepared with different
organic dispersing agents. Solar Energy Materials and Solar Cells , 94, 788-796.
Memming, R. (2001) Semiconductor Electrochemistry . 1st ed. 2001: Wiley-VCH.
Miller, E.L., Paluselli, D., Marsen, B. and Rocheleau, R.E. (2005) Development of reactively
sputtered metal oxide films for hydrogen-producing hybrid multijunction photoelectrodes.
Solar Energy Materials and Solar Cells , 88, 131-144.
Minggu, L.J., Wan Daud, W.R. and Kassim, M.B. (2010) An overview of photocells and photore-
actors for photoelectrochemical water splitting. International Journal of Hydrogen Energy ,
35, 5233-5244.
Nakamura, R., Tanaka, T. and Nakato, Y. (2004) Mechanism for visible light responses in
anodic photocurrents at N-doped TiO 2 film electrodes. The Journal of Physical Chemistry
B , 108, 10617-10620.
Nathan, S.L. (2005) Basic research needs for solar energy utilization. In: Report on the Basic
Energy Sciences Workshop on Solar Energy Utilization . R.M. Nault, Ed., C.I.o. Technology.
Nowotny, J., Bak, T., Nowotny, M.K. and Sheppard, L.R. (2007a) Titanium dioxide for
solar-hydrogen I. Functional properties. International Journal of Hydrogen Energy , 32,
2609-2629.
Nowotny, J., Bak, T., Nowotny, M.K. and Sheppard, L.R. (2007b) Titanium dioxide for solar-
hydrogen II. Defect chemistry. International Journal of Hydrogen Energy , 32, 2630-2643.
Nowotny, J., Bak, T., Nowotny, M.K. and Sheppard, L.R. (2007c)Titanium dioxide for solar-
hydrogen III: Kinetic effects at elevated temperatures. International Journal of Hydrogen
Energy , 32, 2644-2650.
Nowotny, J., Bak, T., Nowotny, M.K. and Sheppard, L.R. (2007d) Titanium dioxide for
solar-hydrogen IV. Collective and local factors in photoreactivity. International Journal of
Hydrogen Energy , 32, 2651-2659.
Nozik, A.J. (1976) p-n photoelectrolysis cells. Applied Physics Letters , 29, 150-153.
Nozik, A.J. (1978) Photoelectrochemistry: Applications to solar energy conversion. Annual
Review of Physical Chemistry , 29, 189-222.
Nozik, A.J. and Memming, R. (1996) Physical chemistry of semiconductor-liquid interfaces.
The Journal of Physical Chemistry , 100, 13061-13078.
Ohashi, K., McCann, J. and Bockris, J.O.M. (1977) Stable photoelectrochemical cells for the
splitting of water. Nature , 266, 610-611.
O'Hayre, R., Cha, S.-W., Colella W. and Prinz, F.B. (2006) Fuel Cells Fundamentals . John
Wiley & Sons, Inc., New York, USA.
Paracchino, A., Laporte, V., Sivula, K., Grätzel, M. and Thimsen, E. (2011) Highly active oxide
photocathode for photoelectrochemical water reduction. Nature Materials , 10, 456-461.
Peterson, P. (2012) Resources for Electrochemistry. http://www.consultrsr.com/resources/ref/
select.htm.
Pine Instrument Company (2012) http://www.pineinst.com/echem/viewproduct.asp?ID
47799.
Rahman, M.M., Krishna, K. M., Soga, T., Jimbo, T. and Umeno, M. (1999) Optical properties
and X-ray photoelectron spectroscopic study of pure and Pb-doped TiO 2 thin films. Journal
of Physics and Chemistry of Solids , 60, 201-210.
Reichman, J. (1980) The current-voltage characteristics of semiconductor-electrolyte junction
photovoltaic cells. Applied Physics Letters , 36, 574-577.
Reiss, H. (1978) Photocharacteristics for electrolyte-semiconductor junctions, Journal of The
Electrochemical Society , 125, 937-949.
Santato, C., Ulmann, M. and Augustynski, J. (2001) Photoelectrochemical Properties of
Nanostructured Tungsten Trioxide Films. The Journal of Physical Chemistry B , 105,
936-940.
=
Search WWH ::




Custom Search