Electronic band structures and photovoltaic properties of MWO4 (M=Zn, Mg, Ca, Sr) compounds
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Seong Sik Shin | Dong Hoe Kim | H. Jung | K. Hong | Dong-Wook Kim | Sangwook Lee | I. Cho | T. Noh
[1] Shicheng Zhang,et al. Fabrication and photoelectrochemical properties of porous ZnWO4 film , 2006 .
[2] M. Couchaud,et al. Optical properties and laser performance of neodymium doped scheelites CaWO4 and NaGd(WO4)2 , 1996 .
[3] H. Fu,et al. Photocatalytic activities of a novel ZnWO4 catalyst prepared by a hydrothermal process , 2006 .
[4] R. Pullar,et al. MgWO4, ZnWO4, NiWO4 and CoWO4 microwave dielectric ceramics , 2007 .
[5] W. Jost,et al. Physical Chemistry, An Advanced Treatise , 1974 .
[6] Yiying Wu,et al. Zinc stannate (Zn2SnO4) dye-sensitized solar cells. , 2007, Journal of the American Chemical Society.
[7] I. Wachs,et al. Surface structures of supported tungsten oxide catalysts under dehydrated conditions , 1996 .
[8] M. Itoh,et al. One- and two-photon excited luminescence and band-gap assignment inCaWO4 , 2004 .
[9] A. J. Frank,et al. Influence of Electrical Potential Distribution, Charge Transport, and Recombination on the Photopotential and Photocurrent Conversion Efficiency of Dye-Sensitized Nanocrystalline TiO2 Solar Cells: A Study by Electrical Impedance and Optical Modulation Techniques , 2000 .
[10] Dong Wook Kim,et al. Surfactant-assisted shape evolution of thermally synthesized TiO2 nanocrystals and their applications to efficient photoelectrodes. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[11] Jinhua Ye,et al. A Systematical Study on Photocatalytic Properties of AgMO2 (M = Al, Ga, In): Effects of Chemical Compositions, Crystal Structures, and Electronic Structures , 2009 .
[12] Burke,et al. Generalized Gradient Approximation Made Simple. , 1996, Physical review letters.
[13] S. Martin,et al. Environmental Applications of Semiconductor Photocatalysis , 1995 .
[14] Fuqiang Huang,et al. Structure-dependent photocatalytic activities of MWO4 (M = Ca, Sr, Ba) , 2009 .
[15] Vidhya Chakrapani,et al. Band‐Edge Engineered Hybrid Structures for Dye‐Sensitized Solar Cells Based on SnO2 Nanowires , 2008 .
[16] D. Jaque,et al. Properties of Nd3+-doped and undoped tetragonal PbWO4, NaY(WO4)2, CaWO4, and undoped monoclinic ZnWO4 and CdWO4 as laser-active and stimulated raman scattering-active crystals. , 1999, Applied optics.
[17] D. Errandonea,et al. Optical absorption of divalent metal tungstates: Correlation between the band-gap energy and the cation ionic radius , 2008, 0807.2115.
[18] Jinhua Ye,et al. Correlation of Crystal Structures, Electronic Structures, and Photocatalytic Properties in a Series of Ag-based Oxides: AgAlO2, AgCrO2, and Ag2CrO4 , 2008 .
[19] A. Bhattacharya,et al. Environment sensitive impedance spectroscopy and dc conductivity measurements on NiWO4 , 1997 .
[20] David Cahen,et al. Nanocrystalline Mesoporous Strontium Titanate as Photoelectrode Material for Photosensitized Solar Devices: Increasing Photovoltage through Flatband Potential Engineering , 1999 .
[21] K. Hong,et al. Photophysical, Photoelectrochemical, and Photocatalytic Properties of Novel SnWO4 Oxide Semiconductors with Narrow Band Gaps , 2009 .
[22] Akihiko Kudo,et al. Recent progress in the development of visible light-driven powdered photocatalysts for water splitting , 2007 .
[23] P. Pandey,et al. Spray deposition process of polycrystalline thin films of CuWO4 and study on its photovoltaic electrochemical properties , 2005 .
[24] White,et al. Implementation of gradient-corrected exchange-correlation potentials in Car-Parrinello total-energy calculations. , 1994, Physical review. B, Condensed matter.
[25] M. Lerch,et al. Conversion of Colloidal ZnO-WO3 Heteroaggregates into Strongly Blue Luminescing ZnWO4 Xerogels and Films , 1998 .
[26] H. Jung,et al. Acid Adsorption on TiO2 Nanoparticles—An Electrochemical Properties Study , 2008 .
[27] M. Grätzel. Photoelectrochemical cells : Materials for clean energy , 2001 .
[28] Michael Grätzel,et al. Photoelectrochemical cells , 2001, Nature.
[29] G. Boschloo,et al. Nanostructured Zinc Stannate as Semiconductor Working Electrodes for Dye-Sensitized Solar Cells , 2007 .
[30] Yongfa Zhu,et al. Synthesis and photocatalytic performance of ZnWO4 catalyst , 2007 .
[31] Roger G. Williams,et al. Electronic band structures of the scheelite materials --- CaMoO_4, CaWO_4, PbMoO_4, and PbWO_4. , 1998 .
[32] Dong‐Wan Kim,et al. Investigation of the relations between structure and microwave dielectric properties of divalent metal tungstate compounds , 2006 .
[33] B. Chudasama,et al. Crystallization and optical properties of CaWO4 and SrWO4 , 2006 .
[34] Ryuji Kikuchi,et al. Impedance Analysis of Internal Resistance Affecting the Photoelectrochemical Performance of Dye-Sensitized Solar Cells , 2005 .