
Amorphous and Heterogeneous Silicon-Based Films - 2002: Volume 715
Materials Research Society (Publisher)
Published on 11. October 2002
Book
Hardback
832 pages
978-1-55899-651-9 (ISBN)
Description
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.
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.
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.
More details
Series
Language
English
Place of publication
New York
United States
Target group
Professional and scholarly
Illustrations
Worked examples or Exercises
Dimensions
Height: 229 mm
Width: 152 mm
Thickness: 44 mm
Weight
1270 gr
ISBN-13
978-1-55899-651-9 (9781558996519)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Persons
Editor
University of Oregon
University of Illinois, Urbana-Champaign
University of Cambridge