P.M.S. Monk, et al., “Electrochromic Display Devices of Tungstic Oxide Containing Vanadium or Camdium Sulphide as a Light-Sensitive Layer”, Electrochimica Acta, 38 (18), 2759-2764 (1993). |
Tsubomura, et al., “Solar Cells”, Critical Rev. Solid State and Materials Sci., 18 (3), 261-326 (1993). |
M. Kaneko, “Photochargeable Multilayer Membrane Device Composed of Cds Film and Prussian Blue Battery”, Electrochimica Acta, 35 (1), 292-293 (1993). |
M. Nagasu, et al., “Photointercalation Characteristics of thin WO3 films”, J. Appl. Phys., 71 (1), 398-402 (1992). |
R.J. Colton, et al., “Photochromism and Electrochromism in Amorphous Transition Metal Oxide Films”, Accounts of Chemical Research, 11, 170-176 (1978). |
B. Ohtani, et al., “Multiple-Mode Responsive Device. Photo- and Electro-Chromic Composit Thin Film of Tungsten Oxide with Titanium Oxide”, Chemistry Letters, 295-298 (1988). |
C. Bechinger, et al., “Photoinduced Doping of Thin Amorphous WO3 Films”, Thin Solid Films, 239, 156-160 (1994). |
M. Nagasu, et al., “Photointercalation Effect of Thin WO3 Films”, Appl. Phys. Lett., 57 (13), 1324-25 (1990). |
J.N. Yao, et al., “Photochromic and Electrochromic Behavior of Electrodeposited MoO3 Thin Films”, J. Electroanal. Chem., 290, 263-267 (1990). |
K. Yamanaka, “Photo-Electrochemical Effects of WO3 Electrochromic Devices”, Jpn. J. Appl. Phys., 19 (9), L517-L518 (1980). |
K. Yamanaka, “Light Induced Coloration in WO3 Electrochromic Devices”, Jpn. J. Appl. Phys., 21 (7), 1108 (1982). |
Y. Shigesato, “Photochromic Properties of Amorphous WO3 Films”, Jpn. J. Appl. Phys., 1457-1462 (1991). |
S. Hotchandani, et al., “Electrochromic and Photoelectrochromic Behavior of Thin WO3 Films Prepared from Quantum Size Colloidal Particles”, Langmuir, 10 (1), 17-22 (1994). |
M.P. Stikans, et al., “Integral Photoelectric Properties of Thin-Film Systems Based on a Photoconductor and an Electrochromic Material”, Sov. Phys. Tech. Phys., 36 (1), 53-56 (1992). |
T.C. Arnoldussen, “Electrochromism and Photochromism in MoO3 Films”, Tech. Digest 1975 International Electron Devices Meeting, 389-392 (1975). |
M. K. Nazeeruddin, et al., “Conversion of Light to Electricity by Cis-X2 Bis(2,2′-bipyridyl-4,4′-dicarboxylate)ruthenium (II) Charge-Transfer Sensitizers (X=Cl31 ,Br−, I', CN−, and SCN−) on Nanocrystalline TiO2 Electrodes”, J. Am. Chem. Soc., 115, 6382-6390 (1993). |
B. O'Regan, et al., “A Low-Cost, High-Efficiency Solar Cell Based on Dye-Sensitized Colloidal TiO2 Films”, Nature 353, 737-739 (1991). |
T.E. Mallouk, “Bettering Nature's Solar Cells”, Nature 353, 698-699 (1991). |
T.H. Fleisch, et al., “An XPS Study of the UV Reduction and Photochromism of MoO3and WO3 ”, J. Chem. Phys. 76, 780-786 (1982). |
S.K. Deb., “A Novel Electrophotographic System”, Applied Optics, Suppl. 1969, No. 3, J, 192-195. |
A Kraft & K. H. Heckner, “Photoelectrochemical Properties of ITO Coated n-type Semiconductor Electrodes,” Proceedings of the SPIE (1994). |
Xavier Marguerettaz et al., “Heterodyads: Electron Transfer at a Semiconductor Electrode-Liquid Electrolyte Interface Modified by an Adsorbed Spacer-Acceptor Complex,” 116 J. Am. Chem. Soc. 2629 (1994). |
Idriss Bedja et al., “Electrochromic and Photoelectrochchemical Behavior of Thin WO3 Films Prepared From Quantized Colloidal Particles,” 274 Thin Solid Films 195 (1994). |
M. K. Nazeeruddin et al., “Conversion of Light to Electricity by cis-X2Bis(2,2'-bipyridyl-4,4'-dicarboxylate)ruthenium(II) Charge Transfer Sensitizers (X = CI‥, Br‥, I‥, CN‥, and SCN‥) on Nanocrystalline TiO2 Electrodes, ” 95 J. Am. Chem. Soc.6382 (1993). |
Anders Hagfeld & Michael Grätzel, “Light-Induced Redox Reactions in Nanocrystalline Systems,” 95 Chem. Rev. 49 (1995). |