2014
DOI: 10.1002/pola.27219
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Plasticization of a polymer layer harnessed to a silicon microcantilever as a highly sensitive and selective means to detect nitroaromatic derivatives

Abstract: A new approach to the chemo-mechanical detection of trace amounts of nitroaromatics, even in the presence of high concentrations of background materials, is presented. The detection scheme is based on the plasticization of an aminopropyl silane layer that is harnessed to a silicon beam following its reaction with nitroaromatic systems. The reactioninduced plasticization attenuates the temperature induced bending of the polymer-beam sandwich, offering a simple and very sensitive tool for the detection of nitroa… Show more

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Cited by 2 publications
(1 citation statement)
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“…Similarly, the humidity from the environment or the presence of other molecules, such as acetonitrile, anisole, benzaldehyde or toluene, interferes with the sensor performance. 161 In order to consider a realistic environment, Shemesh et al 162 functionalized silicon cantilevers with poly 3-aminopropyl silane (APS). The interaction between trinitrotoluene (trinitrotoluene) molecules and APS resulted in an irreversible nucleophilic reaction.…”
Section: Microcantilever-based Devices: Applicationsmentioning
confidence: 99%
“…Similarly, the humidity from the environment or the presence of other molecules, such as acetonitrile, anisole, benzaldehyde or toluene, interferes with the sensor performance. 161 In order to consider a realistic environment, Shemesh et al 162 functionalized silicon cantilevers with poly 3-aminopropyl silane (APS). The interaction between trinitrotoluene (trinitrotoluene) molecules and APS resulted in an irreversible nucleophilic reaction.…”
Section: Microcantilever-based Devices: Applicationsmentioning
confidence: 99%