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Results 1 to 25 of 74

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Sphere-lilce CuGaS2 nanoparticles synthesized by a simple biomolecule-assisted solvothermal routeJIASONG ZHONG; YINSHENG ZHAO; HAILONG YANG et al.Applied surface science. 2011, Vol 257, Num 23, pp 10188-10194, issn 0169-4332, 7 p.Article

Resonance impurity radiation in CuGaS2 crystalsSYRBU, N. N; NEMERENCO, L. L; TEZLEVAN, V. E et al.Optical materials (Amsterdam). 2007, Vol 30, Num 3, pp 451-456, issn 0925-3467, 6 p.Article

Defect chemistry in CuGaS2 thin films: A photoluminescence studyBOTHA, J. R; BRANCH, M. S; BERNDT, P. R et al.Thin solid films. 2007, Vol 515, Num 15, pp 6246-6251, issn 0040-6090, 6 p.Conference Paper

Radiative defects in CuGaS2 thin filmsBOTHA, J. R; BRANCH, M. S; LEITCH, A. W. R et al.Physica. B, Condensed matter. 2003, Vol 340-42, pp 923-927, issn 0921-4526, 5 p.Conference Paper

Sol-gel synthesis and optical properties of CuGaS2 quantum dots embedded in sodium borosilicate glassJIASONG ZHONG; HAIJUN ZHAO; CHENGLONG ZHANG et al.Journal of alloys and compounds. 2014, Vol 610, pp 392-398, issn 0925-8388, 7 p.Article

Characterization of Cu(In, Ga)S2 crystals grown from the meltOISHI, Koichiro; YONEDA, Kazuhiro; YOSHIDA, Osamu et al.Thin solid films. 2007, Vol 515, Num 15, pp 6265-6268, issn 0040-6090, 4 p.Conference Paper

Structure and morphology of CuGaS2 thin filmsBRANCH, M. S; BERNDT, P. R; BOTHA, J. R et al.Thin solid films. 2003, Vol 431-32, pp 94-98, issn 0040-6090, 5 p.Conference Paper

CuGaS2 hollow spheres from Ga―CuS core―shell nanoparticlesCHA, Ji-Hyun; JUNG, Duk-Young.Ultrasonics sonochemistry. 2014, Vol 21, Num 3, pp 1194-1199, issn 1350-4177, 6 p.Article

A copper-deficient tetragonal phase derived from chalcopyrite CuGaS2SALAK, A. N; ZHALUDKEVICH, A. L; KORZUN, B. V et al.Journal of physics. Condensed matter (Print). 2013, Vol 25, Num 8, issn 0953-8984, 082204.1-082204.4Article

Influence of precursor stacking on the absorber growth in Cu(In,Ga)S2 based solar cells prepared by a rapid thermal processMERDES, S; MAINZ, R; RODRIGUEZ-ALVAREZ, H et al.Thin solid films. 2011, Vol 519, Num 21, pp 7189-7192, issn 0040-6090, 4 p.Conference Paper

Quasi-ternary system CuGaS2-CuInS2-2CdSMARUSHKO, L. P; PISKACH, L. V; ROMANYUK, Y. E et al.Journal of alloys and compounds. 2010, Vol 492, Num 1-2, pp 184-189, issn 0925-8388, 6 p.Article

Temperature dependence of the exciton gap in monocrystalline CuGaS2LEVCENCO, S; DOKA, S; TEZLEVAN, V et al.Physica. B, Condensed matter. 2010, Vol 405, Num 17, pp 3547-3550, issn 0921-4526, 4 p.Article

Optical properties of chalcopyrite-type intermediate transition metal band materials from first principlesAGUILERA, I; PALACIOS, P; WAHNON, P et al.Thin solid films. 2008, Vol 516, Num 20, pp 7055-7059, issn 0040-6090, 5 p.Conference Paper

Trialkylammonium salts of [M(SC{O}R)4]- (M = Ga3+ and In3+) as precursors for metal sulfide thin filmsDEIVARAJ, Theivanayagam C; MING LIN; KIAN PING LOH et al.Journal of material chemistry. 2003, Vol 13, Num 5, pp 1149-1155, issn 0959-9428, 7 p.Article

Anharmonic properties of soft modes in CuGaS2 and AgGaS2 chalcopyrite semiconductorsGONZALEZ, J; ROA, L; FOURET, R et al.Physica status solidi. B. Basic research. 2001, Vol 225, Num 2, pp R12-R14, issn 0370-1972Article

Low temperature synthesis of the semiconductor CuGaS2SUDARSAN, V; KULSHRESHTHA, S. K.Materials chemistry and physics. 1997, Vol 49, Num 2, pp 146-149, issn 0254-0584Article

Growth of CuGaS2 single crystals by the traveling heater method using CuI solventMIYAKE, H; HATA, M; HAMAMURA, Y et al.Journal of crystal growth. 1994, Vol 144, Num 3-4, pp 236-242, issn 0022-0248Article

Electrophoretic deposition of Ga-Cu core-shell nanocomposites for CuGaS2 thin filmsYEON SOO LEE; CHA, Ji-Hyun; BYOUNG KOUN MIN et al.Solar energy materials and solar cells. 2014, Vol 125, pp 138-144, issn 0927-0248, 7 p.Article

Properties of pulse electrodeposited copper gallium sulphide filmsVADIVEL, S; SRINIVASAN, K; MURALI, K. R et al.Journal of materials science. Materials in electronics. 2013, Vol 24, Num 7, pp 2500-2505, issn 0957-4522, 6 p.Article

Interference of resonance luminescence of exciton polaritons in CuGaS2 crystalsSYRBU, N. N; NEMERENCO, L. L; STAMOV, I. G et al.Optics communications. 2007, Vol 272, Num 1, pp 124-130, issn 0030-4018, 7 p.Article

Characteristics of stacked CuInS2 and CuGaS2 layers as determined by the growth sequenceGUILLEN, C; HERRERO, J.Thin solid films. 2007, Vol 515, Num 15, pp 5917-5920, issn 0040-6090, 4 p.Conference Paper

Theoretical modelling of intermediate band solar cell materials based on metal-doped chalcopyrite compoundsPALACIOS, P; SANCHEZ, K; CONESA, J. C et al.Thin solid films. 2007, Vol 515, Num 15, pp 6280-6284, issn 0040-6090, 5 p.Conference Paper

Efficient thin film solar cell consisting of TCO/CdS/CuInS2/CuGaS2 structureGOTO, H; HASHIMOTO, Y; ITO, K et al.Thin solid films. 2004, Vol 451-52, pp 552-555, issn 0040-6090, 4 p.Conference Paper

Interface Fermi level pinning in a Cu/p-CuGaS2 Schottky diodeSUGIYAMA, M; NAKAI, R; NAKANISHI, H et al.The Journal of physics and chemistry of solids. 2003, Vol 64, Num 9-10, pp 1787-1790, issn 0022-3697, 4 p.Conference Paper

Photoluminescence of site-selectively Zn-doped CuGaS2/GaP epitaxial layersIIDA, S; ICHINOKURA, H; TOYAMA, Y et al.The Journal of physics and chemistry of solids. 2003, Vol 64, Num 9-10, pp 2017-2020, issn 0022-3697, 4 p.Conference Paper

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