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Titlebook: Next Generation Multilayer Graded Bandgap Solar Cells; A. A. Ojo,W. M. Cranton,I. M. Dharmadasa Book 2019 Springer International Publishin

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CdS Deposition and Characterisation,ar cells as window layers and other electronic devices are usually grown by wet chemical methods using CdCl. as the cadmium source and either Na.S.O., NH.S.O. or NH.CSNH. as sulphur sources. Obviously, one of the sulphur precursors should produce more suitable CdS layers required to yield the highes
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Solar Cell Fabrication and Characterisation,ng ., ., . + large Schottky barrier (SB) and . + SB architecture using ZnS, CdS and CdTe thin layers. The fabricated devices were evaluated using both current-voltage (.-.) and capacitance-voltage (.) techniques. The inclusion of Ga into the regular CdCl. post-growth treatment and the effect of pH w
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Conclusions, Challenges Encountered and Future Work,emiconductor material issues, processing steps, graded bandgap device architectures and device physics paves the way to achieving high-energy conversion efficiency. Although the photovoltaic market is dominated by Si-based solar cells, CdTe-based solar cells provide competitiveness based on its econ
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. POSS are completely defined molecules of nanoscaledimensions that may be functionalized with reactive groups suitable for the synthesis of new organic–inorganichybrids, thus providing the opportunity to design and build materials with extremely well-defineddimensions possessing nanophase behavior.
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