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general tagging of cross-sectional technologies spanning over several sections of the ipc (140) 140
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reduction of greenhouse gas [ghg] emissions, related to energygeneration, transmission or distribution (140) 140
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generation of electric power by conversion of infra-redradiation, visible light or ultraviolet light, e.g. usingphotovoltaic [pv] modules (25) 25
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thin films (5) 5
thin-film solar cell (5) 5
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buffer layer (4) 4
cables (4) 4
conductors (4) 4
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disposal of solid waste (4) 4
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polykristalliner stoff (4) 4
reclamation of contamined soil soil (4) 4
selection of materials for their conductive, insulating ordielectric properties (4) 4
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zno (4) 4
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zn (3) 3
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absorber (2) 2
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based thin-film solar cells (2) 2
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Solar Energy Materials and Solar Cells, ISSN 0927-0248, 03/2014, Volume 122, pp. 309 - 313
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 2009, Volume 93, Issue 6, pp. 1037 - 1041
In a large-area approach up to 60 cm×120 cm size, monolithically integrated CIS-based thin-film PV modules have come to the efficiency level of 13%. The key... 
Solar cells | Packaging | p–n hetero-interface | CuInSe 2-based thin-film solar cells | Recycling | CuInSe | based thin-film solar cells | p-n hetero-interface | CuInSe2-based thin-film solar cells | SOLAR-CELLS | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | BUFFER | Thin films | Dielectric films | Manufacturing costs | Solar energy
Journal Article
Japanese Journal of Applied Physics, ISSN 0021-4922, 10/2012, Volume 51, Issue 10
Journal Article
Japanese Journal of Applied Physics, ISSN 0021-4922, 10/2012, Volume 51, p. 10
Journal Article
Japanese Journal of Applied Physics, ISSN 0021-4922, 10/2012, Volume 51, Issue 10S, p. 10
Journal Article
Progress in Photovoltaics: Research and Applications, ISSN 1062-7995, 09/2010, Volume 18, Issue 6, pp. 453 - 466
Journal Article
Solar Energy, ISSN 0038-092X, 12/2004, Volume 77, Issue 6, pp. 717 - 724
The CBD-Zn(O,S,OH) buffer process is reviewed. Applying this buffer, our highest efficiencies are achieved, such as a circuit (or submodule) efficiency of... 
Eco-friendly device structure | Solar cell | (CIGS)-based thin-film module | Zn(O,S,OH) | Cd-free buffer | Cu(InGa)Se | buffer | PV module
Journal Article
Jpn J Appl Phys, ISSN 0021-4922, 10/2012, Volume 51, Issue 10, pp. 10NC01 - 10NC01-5
The objective of this paper is to review current status and future prospect on CuInSe 2 (CIS)-based thin-film photovoltaic (PV) technology. In CIS-based... 
PHYSICS, APPLIED | SOLAR-CELLS
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 2009, Volume 93, Issue 8, pp. 1318 - 1320
The objective of this study is to find the key factors to improve V oc. In this study, pentanary Cu(InGa)(SeS) 2 absorbers were prepared by selenization and... 
Thin-film solar cells | Δ Tsul−sel technique | Sulfurization degree | Cu(InGa)(SeS) 2 absorber | Sulfurization after selenization method | technique | absorber | Cu(InGa)(SeS)
Journal Article
Thin Solid Films, ISSN 0040-6090, 07/2017, Volume 633, pp. 2 - 12
Journal Article
Solar Energy, ISSN 0038-092X, 01/2004, Volume 77, Issue 6, p. 717
  The CBD-Zn(O,S,OH)x buffer process is reviewed. Applying this buffer, our highest efficiencies are achieved, such as a circuit (or submodule) efficiency of... 
Thin films | Photovoltaic cells | Circuits | Solar energy | Research
Journal Article
Solar Energy, ISSN 0038-092X, 2004, Volume 77, Issue 6, pp. 717 - 724
The CBD-Zn(O,S,OH) x buffer process is reviewed. Applying this buffer, our highest efficiencies are achieved, such as a circuit (or submodule) efficiency of... 
Solar cell | Eco-friendly device structure | Cu(InGa)Se 2 (CIGS)-based thin-film module | Cd-free buffer | PV module | Zn(O,S,OH) x buffer
Journal Article
Solar Energy, ISSN 0038-092X, 01/2004, Volume 77, Issue 6, pp. 717 - 717
High thin-film photovoltaic modules are achieved by application of the chemical bath deposition-zinc(oxygen.sulfur, hydroxyl) sub(x) buffer process. A circuit... 
Journal Article
Nihon Enerugi Gakkaishi/Journal of the Japan Institute of Energy, ISSN 0916-8753, 03/2008, Volume 87, Issue 3, pp. 169 - 174
Journal Article
Materials Science Forum, ISSN 0255-5476, 07/2012, Volume 725, pp. 165 - 170
In the CuInSe2(CIS)-based thin-film PV technology, various characterization techniques have been applied to measure the composition, crystal structure, depth... 
based thin-film PV technology | Thin-film solar cells | Characterization techniques | Photovoltaic (PV) technology | CuinSe
Journal Article
Japanese Journal of Applied Physics, Part 1: Regular Papers and Short Notes and Review Papers, ISSN 0021-4922, 05/2000, Volume 39, Issue 5 A, pp. 2577 - 2582
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 08/2009, Volume 93, Issue 8, p. 1318
The objective of this study is to find the key factors to improve V.sub.oc. In this study, pentanary Cu(InGa)(SeS).sub.2 absorbers were prepared by... 
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 2003, Volume 75, Issue 1, pp. 179 - 184
ZnO:B windows for 30 cm×30 cm-sized Cu(In,Ga)Se 2 (CIGS)-based submodules are deposited by metal-organic chemical vapor deposition (MOCVD). The ZnO thin films... 
Window | ZnO:B | Submodules | CIGS | MOCVD
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 2001, Volume 67, Issue 1-4, pp. 247 - 253
High-performance Cu(InGa)Se (CIGS) thin-film absorbers with an intentionally graded band-gap structure have been fabricated by a simple two-stage method using... 
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 2001, Volume 67, Issue 1, pp. 247 - 253
High-performance Cu(InGa)Se 2 (CIGS) thin-film absorbers with an intentionally graded band-gap structure have been fabricated by a simple two-stage method... 
Sulfur | Sulfurization | Cu(InGa)Se 2 solar cell | SOLAR-CELLS | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | Cu(InGa)Se | sulfur | sulfurization | solar cell | BAND-GAP
Journal Article
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