Development of High Efficiency Stable Dye Sensitized Solar Cell

Development of High Efficiency Stable Dye Sensitized Solar Cell
Title Development of High Efficiency Stable Dye Sensitized Solar Cell PDF eBook
Author Philippe Wyss
Publisher
Pages
Release 2011
Genre
ISBN

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Dye-Sensitized Solar Cells

Dye-Sensitized Solar Cells
Title Dye-Sensitized Solar Cells PDF eBook
Author Masoud Soroush
Publisher Academic Press
Pages 0
Release 2019-03-01
Genre Science
ISBN 9780128145418

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Dye-Sensitized Solar Cells: Mathematical Modelling and Materials Design and Optimization presents the latest information as edited from leaders in the field. It covers advances in DSSC design, fabrication and mathematical modelling and optimization, providing a comprehensive coverage of various DSSC advances that includes different system scales, from electronic to macroscopic level, and a consolidation of the results with fundamentals. The book is extremely useful as a monograph for graduate students and researchers, but is also a comprehensive, general reference on state-of-the-art techniques in modelling, optimization and design of DSSCs.

Development of High Efficiency, Low-Cost, and Flexible Dye-Sensitized Solar Cells

Development of High Efficiency, Low-Cost, and Flexible Dye-Sensitized Solar Cells
Title Development of High Efficiency, Low-Cost, and Flexible Dye-Sensitized Solar Cells PDF eBook
Author
Publisher
Pages 49
Release 2006
Genre
ISBN

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This report results from a contract tasking Swiss Federal Institute of Technology (EPFL) as follows: The Grantee will investigate and develop a new class of polymer-gel electrolytes for use in flexible dye-sensitized solar cells in order to boost power efficiencies above the 15% light to electrical conversion efficiency.

Development of High Efficiency Dye Sensitized Solar Cells

Development of High Efficiency Dye Sensitized Solar Cells
Title Development of High Efficiency Dye Sensitized Solar Cells PDF eBook
Author Jake Bowers
Publisher
Pages
Release 2011
Genre
ISBN

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Photovoltaic technologies use light from the sun to create electricity, using a wide range of materials and mechanisms. The generation of clean, renewable energy using this technology must become price competitive with conventional power generation if it is to succeed on a large scale. The field of photovoltaics can be split into many sub-groups, however the overall aim of each is to reduce the cost per watt of the produced electricity. One such solar cell which has potential to reduce the cost significantly is the dye sensitised solar cell (DSC), which utilises cheap materials and processing methods. The reduction in cost of the generated electricity is largely dependent on two parameters. Firstly, the efficiency that the solar cell can convert light into electricity and secondly, the cost to deposit the solar cell. This thesis aims to address both factors, specifically looking at altering the transparent conducting oxide (TCO) and substrate in the solar cell. One method to improve the overall conversion efficiency of the device is to implement the DSC as the top cell in a tandem structure, with a bottom infra-red absorbing solar cell. The top solar cell in such a structure must not needlessly absorb photons which the bottom solar cell can utilise, which can be the case in solar cells utilising standard transparent contacts such as fluorine-doped tin oxide. In this work, transparent conducting oxides with high mobility such as titanium-doped indium oxide (ITiO) have been used to successfully increase the amount of photons through a DSC, available for a bottom infra-red sensitive solar cell such as Cu(In, Ga)Se2 (CIGS). Although electrically and optically of very high quality, the production of DSCs on this material is difficult due to the heat and chemical instability of the film, as well as the poor adhesion of TiO2 on the ITiO surface. Deposition of a interfacial SnO2 layer and a post-deposition annealing treatment in vacuum aided the deposition process, and transparent DSCs of 7.4% have been fabricated. The deposition of a high quality TCO utilising cheap materials is another method to improve the cost/watt ratio. Aluminium-doped zinc oxide (AZO) is a TCO which offers very high optical and electronic quality, whilst avoiding the high cost of indium based TCOs. The chemical and thermal instability of AZO films though present a problem due to the processing steps used in DSC fabrication. Such films etch very easily in slightly acidic environments, and are susceptible to a loss of conductivity upon annealing in air, so some steps have to be taken to fabricate intact devices. In this work, thick layers of SnO2 have been used to reduce the amount of etching on the surface of the film, whilst careful control of the deposition parameters can produce AZO films of high stability. High efficiency devices close to 9% have been fabricated using these stacked layers. Finally, transferring solar cells from rigid to flexible substrates offers cost advantages, since the price of the glass substrate is a significant part of the final cost of the cell. Also, the savings associated with roll to roll deposition of solar cells is large since the production doesn't rely on a batch process, using heavy glass substrates, but a fast, continuous process. This work has explored using the high temperature stable polymer, polyimide, commonly used in CIGS and CdTe solar cells. AZO thin films have been deposited on 7.5um thick polyimide foils, and DSCs of efficiency over 4% have been fabricated on the substrates, using standard processing methods.

Development of Dye-Sensitized Solar Cell for High Conversion Efficiency

Development of Dye-Sensitized Solar Cell for High Conversion Efficiency
Title Development of Dye-Sensitized Solar Cell for High Conversion Efficiency PDF eBook
Author Yongwoo Kim
Publisher
Pages
Release 2011
Genre
ISBN 9789533077352

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Dye-sensitized Solar Cells

Dye-sensitized Solar Cells
Title Dye-sensitized Solar Cells PDF eBook
Author Kuppuswamy Kalyanasundaram
Publisher CRC Press
Pages 320
Release 2010-08-03
Genre Science
ISBN 148224716X

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Several forms of thin-film solar cells are being examined as alternatives to silicon-solar cells-one of the most promising technologies is the dye-sensitized solar cell (DSC), with proven efficiencies that approach 11%. This book, which provides a comprehensive look at this promising technology, aims to provide both a graduate level text that bring

Rational Design of Solar Cells for Efficient Solar Energy Conversion

Rational Design of Solar Cells for Efficient Solar Energy Conversion
Title Rational Design of Solar Cells for Efficient Solar Energy Conversion PDF eBook
Author Alagarsamy Pandikumar
Publisher John Wiley & Sons
Pages 400
Release 2018-09-05
Genre Science
ISBN 1119437458

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An interdisciplinary guide to the newest solar cell technology for efficient renewable energy Rational Design of Solar Cells for Efficient Solar Energy Conversion explores the development of the most recent solar technology and materials used to manufacture solar cells in order to achieve higher solar energy conversion efficiency. The text offers an interdisciplinary approach and combines information on dye-sensitized solar cells, organic solar cells, polymer solar cells, perovskite solar cells, and quantum dot solar cells. The text contains contributions from noted experts in the fields of chemistry, physics, materials science, and engineering. The authors review the development of components such as photoanodes, sensitizers, electrolytes, and photocathodes for high performance dye-sensitized solar cells. In addition, the text puts the focus on the design of material assemblies to achieve higher solar energy conversion. This important resource: Offers a comprehensive review of recent developments in solar cell technology Includes information on a variety of solar cell materials and devices, focusing on dye-sensitized solar cells Contains a thorough approach beginning with the fundamental material characterization and concluding with real-world device application. Presents content from researchers in multiple fields of study such as physicists, engineers, and material scientists Written for researchers, scientists, and engineers in university and industry laboratories, Rational Design of Solar Cells for Efficient Solar Energy Conversion offers a comprehensive review of the newest developments and applications of solar cells with contributions from a range of experts in various disciplines.