Inverse Least-Squares Modeling of Vapor Descriptors Using Polymer-Coated Surface Acoustic Wave Sensor Array Responses
- 27 September 2001
- journal article
- Published by American Chemical Society (ACS) in Analytical Chemistry
- Vol. 73 (21) , 5247-5259
- https://doi.org/10.1021/ac010490t
Abstract
In previous work, it was shown that, in principle, vapor descriptors could be derived from the responses of an array of polymer-coated acoustic wave devices. This new chemometric classification approach was based on polymer/vapor interactions following the well-established linear solvation energy relationships (LSERs) and the surface acoustic wave (SAW) transducers being mass sensitive. Mathematical derivations were included and were supported by simulations. In this work, an experimental data set of polymer-coated SAW vapor sensors is investigated. The data set includes 20 diverse polymers tested against 18 diverse organic vapors. It is shown that interfacial adsorption can influence the response behavior of sensors with nonpolar polymers in response to hydrogen-bonding vapors; however, in general, most sensor responses are related to vapor interactions with the polymers. It is also shown that polymer-coated SAW sensor responses can be empirically modeled with LSERs, deriving an LSER for each individual sensor based on its responses to the 18 vapors. Inverse least-squares methods are used to develop models that correlate and predict vapor descriptors from sensor array responses. Successful correlations can be developed by multiple linear regression (MLR), principal components regression (PCR), and partial least-squares (PLS) regression. MLR yields the best fits to the training data, however cross-validation shows that prediction of vapor descriptors for vapors not in the training set is significantly more successful using PCR or PLS. In addition, the optimal dimension of the PCR and PLS models supports the dimensionality of the LSER formulation and SAW response models.Keywords
This publication has 35 references indexed in Scilit:
- Analyzing organic vapors in exhaled breath using a surface acoustic wave sensor array with preconcentration: Selection and characterization of the preconcentrator adsorbentAnalytica Chimica Acta, 1998
- The Polymer-Coated SAW Sensor as a Gravimetric SensorAnalytical Chemistry, 1997
- Examination of mass and modulus contributions to thickness shear mode and surface acoustic wave vapour sensor responses using partition coefficientsFaraday Discussions, 1997
- Performances of Mass-Sensitive Devices for Gas Sensing: Thickness Shear Mode and Surface Acoustic Wave TransducersAnalytical Chemistry, 1996
- Array-Based Vapor Sensing Using Chemically Sensitive, Carbon Black−Polymer ResistorsChemistry of Materials, 1996
- Chemically Sensitive Interfaces on Surface Acoustic Wave DevicesPublished by American Chemical Society (ACS) ,1994
- Dynamics and Response of Polymer-Coated Surface Acoustic Wave Devices: Effect of Viscoelastic Properties and Film ResonanceAnalytical Chemistry, 1994
- Characterization of polymeric surface acoustic wave sensor coatings and semiempirical models of sensor responses to organic vaporsAnalytical Chemistry, 1993
- Temperature effect and chemical response of surface acoustic wave (SAW) single-delay-line chemosensorsSensors and Actuators B: Chemical, 1993
- Analytical Uses of Piezoelectric Crystals: A ReviewCritical Reviews in Analytical Chemistry, 1988