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Titlebook: Amorphous and Microcrystalline Silicon Solar Cells: Modeling, Materials and Device Technology; Ruud E. I. Schropp,Miro Zeman Book 1998 Spr

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1386-3290 in 1974. Scien­ tists working in a number of laboratories worldwide have developed improved alloys based on hydrogenated amorphous silicon and microcrystalline silicon. Other scientists have developed new methods for growing these thin films while yet others have developed new photovoltaic (PV) dev
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Theorie und Praxis der Krackverfahren,ell is maximized. In case of a-Si:H solar cells several light trapping techniques have been implemented to achieve this aim. These include the introduction of textured (rough) surfaces and the use of special layers called reflectors in order to keep the light inside the active part of solar cell.
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Grundlagen für die Preisermittlungigher concentration than the as-deposited dangling bonds that are initially present in device-quality material, and thus significantly reduce the lifetime of free carriers. The vast body of experiments carried out during the last 20 years by numerous laboratories suggests that the creation of metast
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Book 1998 I. Schropp and Miro Zeman provide an authoritative overview of the current status of thin film solar cells based on amorphous and microcrystalline silicon. They review the significant developments that have occurred during the evolution of the technology and also discuss the most im­ portant recent
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Metastabilityigher concentration than the as-deposited dangling bonds that are initially present in device-quality material, and thus significantly reduce the lifetime of free carriers. The vast body of experiments carried out during the last 20 years by numerous laboratories suggests that the creation of metast
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1386-3290 talline silicon. They review the significant developments that have occurred during the evolution of the technology and also discuss the most im­ portant recent978-1-4613-7576-0978-1-4615-5631-2Series ISSN 1386-3290
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