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Titlebook: Copper Zinc Tin Sulfide Thin Films for Photovoltaics; Synthesis and Charac Jonathan J. Scragg Book 2011 The Editor(s) (if applicable) and T

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Electrodeposition of Metallic Precursors,eposition (electrodeposition). Only a brief overview will be given, and the reader is referred to Bard and Faulkner (Electrochemical methods, fundamentals and applications, 2nd edn. Wiley, New York, 2001) for further details.
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Conclusions and Recommendations for Further Studies,s of Cu, Sn and Zn. The development of an electrodeposition route for ‘stacked elemental layer’ (SEL) precursor was described in .. The route allows relatively good control of precursor composition, and compositional uniformity was achieved by the use of a rotating disc electrode system. Mo|Cu|Sn|Cu
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2190-5053 onship between structure, phase composition and optoelectronJonathan Scragg documents his work on a very promising material suitable for use in solar cells. Copper Zinc Tin Sulfide (CZTS) is a low cost, earth-abundant material suitable for large scale deployment in photovoltaics. Jonathan pioneered
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Book 2011ed with techniques such as XRD, EDX and Raman – reveal the complex relationships between composition, processing and photovoltaic performance. This exceptional thesis contributes to the development of clean, sustainable and alternative sources of energy
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Conclusions and Recommendations for Further Studies,h was described in .. The use of rapid thermal processing has enabled some time-resolved studies of film formation to be carried out, and in . a model was proposed for film formation when fast heating rates are employed.
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Book 2011bundant material suitable for large scale deployment in photovoltaics. Jonathan pioneered and optimized a low cost route to this material involving electroplating of the three metals concerned, followed by rapid thermal processing (RTP) in sulfur vapour. His beautifully detailed RTP studies – combin
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