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Results 1 to 25 of 604

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Effects of electrochemical reduction of polycrystalline TiO2 photoelectrodes in acidic solutionsLINDQUIST, S.-E; LINDGREN, A; LEYGRAF, C et al.Solar energy materials. 1987, Vol 15, Num 5, pp 367-382, issn 0165-1633Article

The high-efficiency (17.1%) WSe2 photo-electrochemical solar cellPRASAD, G; SRIVASTAVA, O. N.Journal of physics. D, Applied physics (Print). 1988, Vol 21, Num 6, pp 1028-1030, issn 0022-3727Article

ZnS/ZnO heterojunction as photoelectrode: Type II band alignment towards enhanced photoelectrochemical performancePENGHUI GUO; JIANGANG JIANG; SHAOHUA SHEN et al.International journal of hydrogen energy. 2013, Vol 38, Num 29, pp 13097-13103, issn 0360-3199, 7 p.Conference Paper

A new route to control texture of materials: Nanostructured ZnFe2O4 photoelectrodesALI TAHIR, Asif; BURCH, Henry A; UPUL WIJAYANTHA, K. G et al.International journal of hydrogen energy. 2013, Vol 38, Num 11, pp 4315-4323, issn 0360-3199, 9 p.Article

On the structural and photochemical studies of In2O3-admixed nanostructured TiO2 with regard to hydrogen production through photoelectrolysisKARN, R. K; SRIVASTAVA, O. N.International journal of hydrogen energy. 1998, Vol 23, Num 6, pp 439-444, issn 0360-3199Article

Rendement d'une cellule photoélectrochimique à photoélectrode CdSe modifiéeKOVACH, S. K; VAS'KO, A. T; GORODYSKIJ, A. V et al.Èlektrohimiâ. 1986, Vol 22, Num 6, pp 808-813, issn 0424-8570Article

Pulsed laser deposition of metal oxide photoelectrodes for solar-driven hydrogen production: Fabrication techniquesKRONAWITTER, Coleman X; MAO, Samuel S.Proceedings of SPIE, the International Society for Optical Engineering. 2009, Vol 7408, issn 0277-786X, isbn 978-0-8194-7698-2 0-8194-7698-6, 1Vol, 740808.1-740808.9Conference Paper

Photoelectrochemical production of hydrogen : Engineering loss analysisROCHELEAU, R. E; MILLER, E. L.International journal of hydrogen energy. 1997, Vol 22, Num 8, pp 771-782, issn 0360-3199Article

Role of hydrogen in the photoresponse of passivating TiO2 filmPYUN, S.-I; YOON, Y.-G; LEE, E.-J et al.International journal of hydrogen energy. 1995, Vol 20, Num 1, pp 65-69, issn 0360-3199Conference Paper

Thermal stability of dried photosynthetic membrane film for photoelectrodesMIYAKE, J; MAJIMA, T; NAMBA, K et al.Materials science & engineering. C, Biomimetic materials, sensors and systems. 1994, Vol 1, Num 2, pp 63-67, issn 0928-4931Conference Paper

Ideal solar concentrators for photoelectrochemical cellsGORDON, J. M.Solar energy. 1988, Vol 40, Num 4, pp 391-395, issn 0038-092XArticle

The application of nickel molybdate and nickel vanadates as photoanodes in a photoelectrochemical cellDE HAART, L. G. J; BLASSE, G.Materials chemistry and physics. 1985, Vol 12, Num 6, pp 545-550, issn 0254-0584Article

Synthesis of uniform ZnO/ZnS/CdS nanorod films with ion-exchange approach and photoelectrochemical performancesJIANGANG JIANG; MENG WANG; LIJING MA et al.International journal of hydrogen energy. 2013, Vol 38, Num 29, pp 13077-13083, issn 0360-3199, 7 p.Conference Paper

Thermodynamic stability of n-In2S3 photoelectrodesPERALDO BICELLI, L.Electrochimica acta. 1987, Vol 32, Num 5, pp 777-783, issn 0013-4686Article

Preparation and characterization of (Zn, Cd)S photoelectrodes for hydrogen productionARRIAGA, L. G; FERNANDEZ, A. M; SOLORZA, O et al.International journal of hydrogen energy. 1998, Vol 23, Num 11, pp 995-998, issn 0360-3199Conference Paper

Cs and NF3 coadsorption on GaAs(100) and GaAs0.62P0.38(100) for photocathodes preparationCICCACCI, F; CHIAIA, G; LENISA, P et al.Surface science. 1992, Vol 269-270, pp 920-923, issn 0039-6028, bConference Paper

On the accessibility of the bandgap on semiconductor interfaces by non-equilibrium energies of electrons and holesLORENZ, W; SOURISSEAU, R.Journal of electroanalytical chemistry and interfacial electrochemistry. 1988, Vol 239, Num 1-2, pp 9-16, issn 0022-0728Article

Effects of surface modification on n-CdTe photoelectrochemical solar cellsMANDAL, K. C; BASU, S; BOSE, D. N et al.Journal of physical chemistry (1952). 1987, Vol 91, Num 15, pp 4011-4013, issn 0022-3654Article

A Fully Integrated Nanosystem of Semiconductor Nanowires for Direct Solar Water SplittingCHONG LIU; JINYAO TANG; HAO MING CHEN et al.Nano letters (Print). 2013, Vol 13, Num 6, pp 2989-2992, issn 1530-6984, 4 p.Article

Water Splitting Property of Gd1-xBixVO4 Powder Photocatalysts and Their Thin Film PhotoelectrodesKISHIDA, Hiroshi; IMAGAWA, Yuta; YAMAGUCHI, Takeshi et al.Proceedings of SPIE, the International Society for Optical Engineering. 2008, Vol 7044, pp 70440B.1-70440B.12, issn 0277-786X, isbn 978-0-8194-7264-9 0-8194-7264-6, 1VolConference Paper

Consideration of reactor design for solar hydrogen production from hydrogen sulfide using semiconductor particulatesLINKOUS, C. A; MURADOV, N. Z; RAMSER, S. N et al.International journal of hydrogen energy. 1995, Vol 20, Num 9, pp 701-709, issn 0360-3199Article

On the possibility of the transformation of solar energy to chemical energy in the electrochemical cell with photoanode CdSe/TiO2SULEYMANOV, A. S.International journal of hydrogen energy. 1991, Vol 16, Num 11, pp 741-743, issn 0360-3199Article

The photoelectrochemical studies on CdS: Cu: Cl electrodes: importance of photoconductivity effectsAMALNERKAR, D. P; RADHAKRISHNAN, S; MINOURA, H et al.Solar energy materials. 1988, Vol 18, Num 1-2, pp 37-51, issn 0165-1633Article

Materials for photoelectrochemical energy conversionSHEPPARD, L. R; NOWOTNY, J.Advances in applied ceramics. 2007, Vol 106, Num 1-2, pp 9-20, 12 p.Article

Photoelectrochemical hydrogen production using nanostructured α-Fe2O3 electrodesGLASSCOCK, Julie A; BARNES, Piers R. F; PLUMB, Ian C et al.Proceedings of SPIE, the International Society for Optical Engineering. 2006, pp 63400N.1-63400N.12, issn 0277-786X, isbn 0-8194-6419-8, 1VolConference Paper

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