Title :
ATR-FTIR spectroscopic analysis of sorption of aqueous analytes into polymer coatings used with guided SH-SAW sensors
Author :
Jones, Yolanda K. ; Li, Zhonghui ; Johnson, Michael M. ; Josse, Fabien ; Hossenlopp, Jeanne M.
Author_Institution :
Dept. of Chem., Marquette Univ., Milwaukee, WI, USA
Abstract :
Attenuated total internal reflectance Fourier transform infrared (ATR-FTIR) spectroscopy was used for the investigation of sorption of aqueous solutions of analytes into polymer coatings. A series of simple model polymers, such as poly(dimethylsiloxane), poly(epichlorhydrin), and poly(isobutylene), and films and analytes, such as aqueous solutions of ethylbenzene, xylenes, toluene, and nitrobenzene, were used to evaluate the use of ATR-FTIR spectroscopy as a screening tool for sensor development. The ratios of integrated infrared absorption bands provided a simple and efficient method for predicting trends in partition coefficients. Responses of polymer-coated guided shear horizontal surface acoustic wave (SH-SAW) sensor platforms to the series of analytes, using polymer coatings with similar viscoelastic properties, were consistent with ATR-FTIR predictions. Guided SH-SAW sensor responses were linear in all cases with respect to analyte concentration in the tested range. Comparison of ATR-FTIR data with guided SH-SAW sensor data identifies cases where mass loading is not the dominant contribution to the response of the acoustic wave sensor. ATR-FTIR spectra of nitrobenzene, coupled with computational chemistry, provided additional insight into analyte/polymer interactions.
Keywords :
Fourier transform spectroscopy; attenuated total reflection; chemical sensors; infrared spectroscopy; polymer films; sorption; surface acoustic wave devices; ATR-FTIR spectroscopic analysis; aqueous analytes; aqueous solutions; attenuated total internal reflectance Fourier transform infrared spectroscopy; ethylbenzene; guided SH-SAW sensors; integrated infrared absorption bands; nitrobenzene; poly(dimethylsiloxane); poly(epichlorhydrin); poly(isobutylene); polymer coatings; shear horizontal surface acoustic wave sensor; toluene; viscoelastic properties; xylenes; Acoustic sensors; Acoustic waves; Chemical sensors; Electromagnetic wave absorption; Fourier transforms; Infrared spectra; Optical films; Polymer films; Reflectivity; Spectroscopy; Attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR); guided shear horizontal surface acoustic wave (SH-SAW); liquid Sensors;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2005.859231