Organic Semiconductors in Sensor Applications
Organic semiconductors offer unique characteristics such as tunability of electronic properties via chemical synthesis, compatibility with mechanically flexible substrates, low-cost manufacturing, and facile integration with chemical and biological functionalities. These characteristics have prompte...
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oai:localhost:123456789-2120982023-07-17T15:13:10Z Organic Semiconductors in Sensor Applications Bernards, Daniel A. Malliaras, George G. Owens, Róisín M. SpringerLink (Online service) Semicondutores. Polímeros. Física. Engenharia. Organic semiconductors offer unique characteristics such as tunability of electronic properties via chemical synthesis, compatibility with mechanically flexible substrates, low-cost manufacturing, and facile integration with chemical and biological functionalities. These characteristics have prompted the application of organic semiconductors and their devices in physical, chemical, and biological sensors. This book covers this rapidly emerging field by discussing both optical and electrical sensor concepts. Novel transducers based on organic light-emitting diodes and organic thin-film transistors, as well as systems-on-a-chip architectures are presented. Functionalization techniques to enhance specificity are outlined, and models for the sensor response are described. 0 2022-10-11T17:32:32Z 2022-10-11T17:32:32Z 2008. Digital 621.315.5 O68 9783540763147 197792 http://dx.doi.org/10.1007/978-3-540-76314-7 http://dx.doi.org/10.1007/978-3-540-76314-7 |
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Semicondutores. Polímeros. Física. Engenharia. |
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Semicondutores. Polímeros. Física. Engenharia. Bernards, Daniel A. Malliaras, George G. Owens, Róisín M. SpringerLink (Online service) Organic Semiconductors in Sensor Applications |
description |
Organic semiconductors offer unique characteristics such as tunability of electronic properties via chemical synthesis, compatibility with mechanically flexible substrates, low-cost manufacturing, and facile integration with chemical and biological functionalities. These characteristics have prompted the application of organic semiconductors and their devices in physical, chemical, and biological sensors. This book covers this rapidly emerging field by discussing both optical and electrical sensor concepts. Novel transducers based on organic light-emitting diodes and organic thin-film transistors, as well as systems-on-a-chip architectures are presented. Functionalization techniques to enhance specificity are outlined, and models for the sensor response are described. |
format |
Digital |
author |
Bernards, Daniel A. Malliaras, George G. Owens, Róisín M. SpringerLink (Online service) |
author_facet |
Bernards, Daniel A. Malliaras, George G. Owens, Róisín M. SpringerLink (Online service) |
author_sort |
Bernards, Daniel A. |
title |
Organic Semiconductors in Sensor Applications |
title_short |
Organic Semiconductors in Sensor Applications |
title_full |
Organic Semiconductors in Sensor Applications |
title_fullStr |
Organic Semiconductors in Sensor Applications |
title_full_unstemmed |
Organic Semiconductors in Sensor Applications |
title_sort |
organic semiconductors in sensor applications |
publishDate |
2022 |
url |
http://dx.doi.org/10.1007/978-3-540-76314-7 |
work_keys_str_mv |
AT bernardsdaniela organicsemiconductorsinsensorapplications AT malliarasgeorgeg organicsemiconductorsinsensorapplications AT owensroisinm organicsemiconductorsinsensorapplications AT springerlinkonlineservice organicsemiconductorsinsensorapplications |
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1771688716392202240 |