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Results 1 to 25 of 1848

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Development status of high-efficiency HIT solar cellsMISHIMA, Takahiro; TAGUCHI, Mikio; SAKATA, Hitoshi et al.Solar energy materials and solar cells. 2011, Vol 95, Num 1, pp 18-21, issn 0927-0248, 4 p.Conference Paper

17.9% Metal-wrap-through mc-Si cells resulting in module efficiency of 17.0%LAMERS, M. W. P. E; TJENGDRAWIRA, C; SAUAI, E et al.Progress in photovoltaics (Print). 2012, Vol 20, Num 1, pp 62-73, issn 1062-7995, 12 p.Article

Ultra high- efficiency advanced triple-junction (ATJ) solar cell production at emcore photovoltaicsSHARPS, P. R; STAN, M. A; AIKEN, D. J et al.International energy conversion engineering conference. 2002, pp 334-336, isbn 0-7803-7296-4, 3 p.Conference Paper

A new acylation catalystSAEED AHMAD; JAVED IQBAL.Journal of the Chemical Society. Chemical communications. 1987, Num 2, pp 114-115, issn 0022-4936Article

High-efficiency compressive-mode energy harvester enhanced by a multi-stage force amplification mechanismZHENGBAO YANG; JEAN ZU.Energy conversion and management. 2014, Vol 88, pp 829-833, issn 0196-8904, 5 p.Article

Development of a high efficiency metamorphic triple-junction 2.1 eV/1.6 eV/1.2 eV AlGaLnP/InGaAsP/InGaAs space solar cellPATTON, Martin O; SINHAROY, Samar; WEIZER, Vicor G et al.sans titre. 2002, pp 1027-1030, isbn 0-7803-7471-1, 4 p.Conference Paper

Dream machineWINTERS, Jeffrey.Mechanical engineering (New York, N.Y. 1919). 2007, Vol 129, Num 6, pp 36-39, issn 0025-6501, 4 p.Article

High efficiency cryocoolerTWARD, E; CHAN, C. K; COLBERT, R et al.Advances in cryogenic engineering. 2002, Vol 47, pp 1077-1084, issn 0065-2482, 8 p., bConference Paper

Compact spectrum splitting photovoltaic module with high efficiencyMCCAMBRIDGE, James D; STEINER, Myles A; ASHMEAD, James W et al.Progress in photovoltaics (Print). 2011, Vol 19, Num 3, pp 352-360, issn 1062-7995, 9 p.Article

Development and validation of a 5 stroke engine for range extenders applicationKEROMNES, A; DELAPORTE, B; SCHMITZ, G et al.Energy conversion and management. 2014, Vol 82, pp 259-267, issn 0196-8904, 9 p.Article

Control del rendimiento operativo en refinerías = Control of refining efficiencyPEÑA, A.Oilgas. 1996, Vol 29, Num 344, pp 66-74, issn 0030-1493, 6 p.Article

Problèmes énergétiques dans les bâtiments: réponse de l'industrie des composants en matière de chauffage gaz = Energy problems in buildings: the response of manufacturers in gas heating areaDESPRETS, M.Revue générale du gaz. 1985, Vol 107, Num 1, pp 11-18, issn 0373-5001Article

Une unité énergétique de haut rendementGORSHKOV, A. S; KOMAROV, N. F; SHVARTS, A. L et al.Teploenergetika (Moskva, 1954). 1987, Num 5, pp 49-52, issn 0040-3636Article

A three solar cell mechanical stack with an AMO efficiency greater than 30 %BARNETT, A. M; RHOADS, S. L; NEGLEY, G. H et al.Photovoltaic specialists conference. 19. 1987, pp 1526-1527Conference Paper

High-efficiency dual-stroke compressor for heat pumpsYOUNG, R. R; VEYO, S. E; KASTOVICH, J. C et al.ASHRAE transactions. 1984, Vol 90, Num 1B, pp 965-981, issn 0001-2505Article

Heterogeneous chip multiprocessorsKUMAR, Rakesh; TULLSEN, Dean M; JOUPPI, Norman P et al.Computer (Long Beach, CA). 2005, Vol 38, Num 11, pp 32-38, issn 0018-9162, 7 p.Article

Temperature characteristics of high efficiency InGaP/InGaAs/Ge triple-junction solar cells under concentrationNISHIOKA, Kensuke; TAKARNCTO, Tatsuya; AGUI, Takaaki et al.sans titre. 2002, pp 955-958, isbn 0-7803-7471-1, 4 p.Conference Paper

A 23.7 percent efficient one-sun GaAs solar cellTOBIN, S. P; BEJGAR, C; VERNON, S. M et al.Photovoltaic specialists conference. 19. 1987, pp 1492-1493Conference Paper

Development and testing of an improved high-efficiency water heaterVASILAKIS, A. D; VINEYARD, E. A; GERSTMANN, J et al.ASHRAE transactions. 1983, Vol 89, pp 5-17, issn 0001-2505, 1BArticle

Wafer bonding and layer transfer processes for 4-junction high efficiency solar cellsZAHLER, James M; FONTCUBERTA I. MORRAL, Anna; AHN, Chang-Geun et al.sans titre. 2002, pp 1039-1042, isbn 0-7803-7471-1, 4 p.Conference Paper

The feasibility of high-efficiency InAs/GaAs quantum dot intermediate band solar cellsMELLOR, A; LUQUE, A; TOBIAS, I et al.Solar energy materials and solar cells. 2014, Vol 130, pp 225-233, issn 0927-0248, 9 p.Conference Paper

Monolithic quasi-solid-state dye-sensitized solar cells based on iodine-free polymer gel electrolyteYAOGUANG RONG; XIONG LI; TONGFA LIU et al.Journal of power sources. 2013, Vol 235, pp 243-250, issn 0378-7753, 8 p.Article

Survey of intermediate band materials based on ZnS and ZnTe semiconductorsTABLERO, C.Solar energy materials and solar cells. 2006, Vol 90, Num 5, pp 588-596, issn 0927-0248, 9 p.Article

New concepts for high-efficiency silicon solar cellsGLUNZ, S. W.Solar energy materials and solar cells. 2006, Vol 90, Num 18-19, pp 3276-3284, issn 0927-0248, 9 p.Conference Paper

Flexible silver grid/PEDOT:PSS hybrid electrodes for large area inverted polymer solar cellsLIN MAO; QI CHEN; LIWEI CHEN et al.Nano energy (Print). 2014, Vol 10, pp 259-267, issn 2211-2855, 9 p.Article

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