Amorphous Silicon Technology, 1993

Amorphous Silicon Technology, 1993
Title Amorphous Silicon Technology, 1993 PDF eBook
Author
Publisher
Pages 0
Release 1993
Genre Amorphous semiconductors
ISBN

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Amorphous Silicon Technology

Amorphous Silicon Technology
Title Amorphous Silicon Technology PDF eBook
Author
Publisher
Pages 928
Release 1995
Genre Amorphous semiconductors
ISBN

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Amorphous Silicon Technology 1996: Volume 420

Amorphous Silicon Technology 1996: Volume 420
Title Amorphous Silicon Technology 1996: Volume 420 PDF eBook
Author Michael Hack
Publisher
Pages 946
Release 1996-12-31
Genre Technology & Engineering
ISBN

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This book from the highly successful series on amorphous-silicon science and devices reflects the increasing range of applications for a-Si technology. Advances in solar cells incorporating microcrystalline silicon absorber layers are discussed, and a new manufacturing facility for amorphous-silicon-based tandem solar cells is highlighted. Progress towards realizing both higher resolution and improved visibility in active-matrix liquid crystal displays is featured. And while work on raising the deposition rate for amorphous-silicon transistors is also outlined, it is expected that advances in devices and manufacturing will be accelerated when several fundamental puzzles regarding amorphous silicon's structure and optoelectronic properties are resolved. Topics include: solar cells; thin-film transistors and flat-panel displays; sensors, detectors and novel devices; device physics; deposition technologies; studies of growth processes; hydrogen and structure a-Si:H; defects and equilibration in a-Si:H; fundamental issues in defect processes; transport and recombination processes; thin films for photovoltaic and related device applications.

Amorphous and Microcrystalline Silicon Solar Cells: Modeling, Materials and Device Technology

Amorphous and Microcrystalline Silicon Solar Cells: Modeling, Materials and Device Technology
Title Amorphous and Microcrystalline Silicon Solar Cells: Modeling, Materials and Device Technology PDF eBook
Author Ruud E.I. Schropp
Publisher Springer
Pages 215
Release 2016-07-18
Genre Technology & Engineering
ISBN 1461556317

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Amorphous silicon solar cell technology has evolved considerably since the first amorphous silicon solar cells were made at RCA Laboratories 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) device structures with im proved conversion efficiencies. In the last two years, several companies have constructed multi-megawatt manufacturing plants that can produce large-area, multijunction amorphous silicon PV modules. A growing number of people be lieve that thin-film photovoltaics will be integrated into buildings on a large scale in the next few decades and will be able to make a major contribution to the world's energy needs. In this book, Ruud E. 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 innovations in the deposition of the materials, the understanding of the physics, and the fabrication and modeling of the devices.

Amorphous and Nanocrystalline Silicon Science and Technology 2004: Volume 808

Amorphous and Nanocrystalline Silicon Science and Technology 2004: Volume 808
Title Amorphous and Nanocrystalline Silicon Science and Technology 2004: Volume 808 PDF eBook
Author Materials Research Society. Meeting
Publisher
Pages 776
Release 2004-09-03
Genre Technology & Engineering
ISBN

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This book celebrates 20 years of MRS symposia on the topic of amorphous silicon. Contributors showed that the simplified theories developed to explain the limited experimental information available in the early eighties have spurred more sophisticated experimentation - either refining the early understanding or making it irrelevant. The differences of opinion that continue to exist and emerge are probably the hallmark of the amazing vitality of this field. Applications range from 'mature' thin-film transistors, solar cells and image sensors, to the 'emerging' possibility of erbium-doped nanocrystalline silicon-based materials for lasers and amorphous silicon quantum dots for luminescent devices. The book discusses material characterization, growth processes and devices. Each chapter is further subdivided into sections that group papers around common themes. Topics include: nanomaterials; electronic structure; metastable effects; understanding of growth processes; laser-induced crystallization; metal-induced crystallization; other growth techniques; newer devices; solar cells and thin-film transistors.

Proceedings of the Third Symposium on Thin Film Transistor Technologies

Proceedings of the Third Symposium on Thin Film Transistor Technologies
Title Proceedings of the Third Symposium on Thin Film Transistor Technologies PDF eBook
Author Yue Kuo
Publisher The Electrochemical Society
Pages 424
Release 1997
Genre Technology & Engineering
ISBN 9781566771733

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Hydrogenated Amorphous Silicon

Hydrogenated Amorphous Silicon
Title Hydrogenated Amorphous Silicon PDF eBook
Author R. A. Street
Publisher Cambridge University Press
Pages 432
Release 2005-09-08
Genre Technology & Engineering
ISBN 9780521019347

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Divided roughly into two parts, the book describes the physical properties and device applications of hydrogenated amorphous silicon. The first section is concerned with the atomic and electronic structure, and covers growth defects and doping and defect reactions. The emphasis is on the optical and electronic properties that result from the disordered structure. The second part of the book describes electronic conduction, recombination, interfaces, and multilayers. The special attribute of a-Si:H which makes it useful is the ability to deposit the material inexpensively over large areas, while retaining good semiconducting properties, and the final chapter discusses various applications and devices.