The sensitivity to relative humidity ~RH! variations in the range 0%-90% of a platinum polyyne, namely poly-@1,4-dihexadecyloxy-2,5-diethynylbenzene-bis~triphenylphosphine! platinum~II!# ~Pt-P-HDOB! membrane was investigated by means of a surface acoustic wave ~SAW! based sensor. A thin film of polymeric membrane was spin deposited on the free surface of the device and the resulting acoustic velocity and attenuation perturbations allowed the acoustic characterization of the membrane by means of the perturbation theory. The SAW sensor was able to reveal even very low ~,10% RH! humidity conditions at room temperature, with high reproducibility, repeatability and stability.

Sensitivity of a platinum-polyyne-based sensor to low relative humidity and chemical vapors

Cinzia Caliendo;
2002

Abstract

The sensitivity to relative humidity ~RH! variations in the range 0%-90% of a platinum polyyne, namely poly-@1,4-dihexadecyloxy-2,5-diethynylbenzene-bis~triphenylphosphine! platinum~II!# ~Pt-P-HDOB! membrane was investigated by means of a surface acoustic wave ~SAW! based sensor. A thin film of polymeric membrane was spin deposited on the free surface of the device and the resulting acoustic velocity and attenuation perturbations allowed the acoustic characterization of the membrane by means of the perturbation theory. The SAW sensor was able to reveal even very low ~,10% RH! humidity conditions at room temperature, with high reproducibility, repeatability and stability.
2002
Istituto di Acustica e Sensoristica - IDASC - Sede Roma Tor Vergata
Sensors
Surface Acoustic Waves
Humidity
Sensitivity
electroacoustic devices
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/213428
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