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Molecules with Multiple Personalities: How Switchable Materials Could Revolutionize Chemical Sensing

Authors :
Benito, Fernando
Byrne, Robert
Wu, Yanzhe
Nolan, Lorraine
Kim, Jungho
Tong, King
Wallace, Gordon G.
Diamond, Dermot
Source :
ECS Transactions; May 2009, Vol. 19 Issue: 6 p199-210, 12p
Publication Year :
2009

Abstract

Worldwide, the demand for sensing devices that can conform with the requirements of large-scale wireless sensor network (WSN) deployments is rising exponentially. Typically, sensors should be very low cost, low power (essentially self-sustaining), yet very rugged and reliable. At present, functioning WSN deployments involve physical transducers only, such as thermistors, accelerometers, photodetectors, flow meters, to monitor quantities like temperature, movement, light level and liquid level/flow. Remote, widely distributed monitoring of molecular targets remains relatively unexplored, except in the case of targets that can be detected directly using 'non-contact' techniques like spectroscopy. This paper will address the issues inhibiting the close integration of chemical sensing with WSNs and suggest strategies based on fundamental materials science that may offer routes to new sensing surfaces that can switch between different modes of behaviour (e.g. active-passive, expand-contract).

Details

Language :
English
ISSN :
19385862 and 19386737
Volume :
19
Issue :
6
Database :
Supplemental Index
Journal :
ECS Transactions
Publication Type :
Periodical
Accession number :
ejs52651541