Analytical Chemistry. “High-Sensitivity Gas Sensors Based on Gas Permeable Liquid Core Waveguides and Long-Path Absorbance Detection”. Dasgupta et al. vol. 70, No. 22. pp. 4661-4669. Oct. 1998.* |
Jay W. Grate, Stephen J. Martin, and Richard M. White, Acoustic Wave Microsensors Part II, Analytical Chemistry, vol. 65, No. 22, Nov. 15, 1993, pp. 987-996. |
Daniel A. Buttry and Michael D. Ward, Measurement of Interfacial Process at Electrode Surfaces with the Electrochemical Quartz Crystal Microbalance, Chemical Reviews 1992, 92, pp. 1355-1379. Jun. 1992. |
Warren H. Buck and Paul R. Reanick, TEFLON® AF, May 17, 1993. |
William H. King, Jr., Piezoelectric Sorption Detector, Analytical Chemistry, vol. 36, No. 9, Aug. 1964, pp. 1735-1739. |
Stephen J. Martin and Stephen D. Senturla, Dynamics and Response of Polymer-Coated Surface Acoustic Wave Devices: Effect of Viscoelastic Properties and Film Resonance, Analytical Chemistry, vol. 66, No. 14, Jul. 15, 1994, pp. 2201-2219. |
Jay W. Gate and Samuel J. Patrash, Method for Estimating Polymer-Coated Acoustic Wave Vapor Sensor Responses, Jul. 1, 1995, Analytical Chemistry, vol. 67, No. 13, Jul. 1, 1995, pp. 2162-2169. |
Edward T. Zellers and Mingwei Han, Effects of Temperature and Humidity on the Performance of Polymer-Coated Surface Acoustic Wave Vapor Sensor Arrays, Analytical Chemistry, vol. 68, No. 14, Jul. 15, 1996, pp. 2409-2418. |
K. K. Kanazawa, A General Solution for the Change in Mechanical Resonance of a Quartz Oscillator Due to Viscoelastic Overlayers, Apr. 30, 1986, pp. 1-22. |
Ralph Lucklum, Carsten Behling, Richard W. Cernosek, and Stephen J. Martin, Determination of Complex Shear Modulus with Thickness Shear Mode Resonators, J. Phys. D: Appl. Phys. 30 1997, pp. 346-356. |