Thin Film Solar Cells

Thin Film Solar Cells
Author: Jef Poortmans
Publisher: John Wiley & Sons
Total Pages: 502
Release: 2006-10-02
Genre: Science
ISBN: 9780470091272

Thin-film solar cells are either emerging or about to emerge from the research laboratory to become commercially available devices finding practical various applications. Currently no textbook outlining the basic theoretical background, methods of fabrication and applications currently exist. Thus, this book aims to present for the first time an in-depth overview of this topic covering a broad range of thin-film solar cell technologies including both organic and inorganic materials, presented in a systematic fashion, by the scientific leaders in the respective domains. It covers a broad range of related topics, from physical principles to design, fabrication, characterization, and applications of novel photovoltaic devices.

Amorphous and Nanocrystalline Silicon Science and Technology 2004: Volume 808

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

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.

Amorphous and Heterogeneous Silicon-Based Films - 2002:

Amorphous and Heterogeneous Silicon-Based Films - 2002:
Author: J. David Cohen
Publisher: Cambridge University Press
Total Pages: 830
Release: 2014-06-05
Genre: Technology & Engineering
ISBN: 9781107411944

This book on amorphous silicon technology shows a trend towards technologies based on amorphous and heterogeneous silicon (solar cells, TFTs, imaging arrays, sensors, etc.) and brings together researchers from around the world to share their expanding expertise. The book contains eleven chapters and focuses on basic mechanisms of growth (as well as new approaches to film growth); hot wire, CVD-produced amorphous and microcrystalline films and related subjects of film crystallization and recrystallization; the electronic structure and transport properties of silicon-based thin films are discussed, together with hydrogen microstructure and metastability. Silicon nitride, four on alloys with germanium, and two dealing predominantly with silicon carbide are looked at. There is also focus on photovoltaic devices based on either amorphous or microcrystalline (or mixed phase) materials. It also offers a look at thin-film transistors, as well as related types of imaging and sensing arrays and there are papers on novel device structures and new types of technologies being developed using amorphous/heterogeneous thin film, silicon-based materials.

Amorphous and Heterogeneous Silicon-Based Films - 2002: Volume 715

Amorphous and Heterogeneous Silicon-Based Films - 2002: Volume 715
Author: J. David Cohen
Publisher: Cambridge University Press
Total Pages: 0
Release: 2002-10-11
Genre: Technology & Engineering
ISBN: 9781558996519

This book on amorphous silicon technology shows a trend towards technologies based on amorphous and heterogeneous silicon (solar cells, TFTs, imaging arrays, sensors, etc.) and brings together researchers from around the world to share their expanding expertise. The book contains eleven chapters and focuses on basic mechanisms of growth (as well as new approaches to film growth); hot wire, CVD-produced amorphous and microcrystalline films and related subjects of film crystallization and recrystallization; the electronic structure and transport properties of silicon-based thin films are discussed, together with hydrogen microstructure and metastability. Silicon nitride, four on alloys with germanium, and two dealing predominantly with silicon carbide are looked at. There is also focus on photovoltaic devices based on either amorphous or microcrystalline (or mixed phase) materials. It also offers a look at thin-film transistors, as well as related types of imaging and sensing arrays and there are papers on novel device structures and new types of technologies being developed using amorphous/heterogeneous thin film, silicon-based materials.

Solid-State Ionics - 2002: Volume 756

Solid-State Ionics - 2002: Volume 756
Author: Philippe Knauth
Publisher:
Total Pages: 608
Release: 2003-04-17
Genre: Technology & Engineering
ISBN:

The MRS Symposium Proceeding series is an internationally recognised reference suitable for researchers and practitioners.

Silicon Carbide 2002 - Materials, Processing and Devices: Volume 742

Silicon Carbide 2002 - Materials, Processing and Devices: Volume 742
Author: Stephen E. Saddow
Publisher:
Total Pages: 432
Release: 2003-03-25
Genre: Technology & Engineering
ISBN:

Advances in silicon carbide materials, processing and device design have recently resulted in implementation of SiC-based electronic systems and offer great promise in high-voltage, high-temperature and high-frequency applications. This volume focuses on new developments in basic science of SiC materials as well as rapidly maturing device technologies. The challenges in this field include understanding and decreasing defect densities in bulk SiC crystals, controlling morphology and residual impurities in epilayers, optimization of implant activation and oxide-SiC interfaces, and developing novel device structures. This book brings together the crystal growers, physicists and device experts needed to continue the rapid pace of silicon-carbide-based technology. Topics include: epitaxial growth; characterization/defects; MOS technology; SiC processing and devices.