株式会社極東書店トップ商品一覧Semiconductor Device-Based Sensors for Gas, Chemical, and Biomedical Applications.

商品詳細

Semiconductor Device-Based Sensors for Gas, Chemical, and Biomedical Applications.

Semiconductor Device-Based Sensors for Gas, Chemical, and Biomedical Applications.

・ISBN 978-1-4398-1387-4 hard GB£ 290.00

¥91,872.- (税込) (※)価格はご注文時の参考価格となります。
納品価格につきましては書籍の入荷時点で確定となります。
版元の原価改定、外国為替の変動等により異なる場合がございますので、予めご了承下さい。

お気に入り
電子版あり 大学・学術機関向け電子ブック(eBook)ISBN 9780429134609
著者・編者Ren, Fan / Pearton, Stephen J (eds.),
出版社 (CRC Press Inc, US)
出版年月2011
ページ数324 pp.
言語ENG
ニュース番号<A00-26190>

解説

Sales of U.S. chemical sensors represent the largest segment of the multi-billion-dollar global sensor market, which includes instruments for chemical detection in gases and liquids, biosensors, and medical sensors. Although silicon-based devices have dominated the field, they are limited by their general inability to operate in harsh environments faced with factors such as high temperature and pressure.

Exploring how and why these instruments have become a major player, Semiconductor Device-Based Sensors for Gas, Chemical, and Biomedical Applications presents the latest research, including original theoretical and experimental work. It also explains how these investigations have translated into applications and products.

Written by experts in the field, the chapters review cutting-edge progress on semiconductor and nanomaterial-based sensors. An excellent introduction to the subject, this book is also an outstanding reference for those working on different sensor applications. It addresses various subfields, including:

  • GaN-based sensor arrays for quick and reliable medical testing
  • Optical sensors
  • Wireless remote hydrogen sensing systems
  • MOS-based, thin-film, and nanowire-based sensors

The wide-bandgap semiconductor sensors discussed in this book offer many advantages as replacements for silicon-based sensors, including their high chemical resistance, high-temperature operation, and blue and ultraviolet optoelectronic behaviors. Although assays exist for biomedical detection, they are limited by various factors. Nanomaterial devices, such as the sensors examined in this book, are currently the best option for moving toward fast, label-free, sensitive, and selective multiple-detection systems for biological and medical sensing applications. Providing sufficient background information and technical detail, this is an excellent resource for advanced level undergraduate and graduate students as well as researchers in gas, chemical, biological, and medical sensors.