Dielectric Spectroscopy: Choosing the Right Approach - Pharmaceutical Technology

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Dielectric Spectroscopy: Choosing the Right Approach
This tutorial paper is meant to aid in dielectric-sensor selection


Pharmaceutical Technology
Volume 9, Issue 32, pp. 8293

24. J. Melcher, Y. Daben, and G. Arlt, "Dielectric Effects of Moisture in Polyimide," IEEE Transactions on Electrical Insulation 24 (1), 31–38 (1989).

25. D. D. Denton, J. B. Camou, and S. D. Senturia, "Effects of Moisture Uptake on the Dielectric Permittivity of Polyimide Films," in Proceedings of the 1985 International Symposium on Moisture and Humidity (Washington, D.C, 1985), pp. 505–513.

26. Kapton Polyimide Film: Summary of Properties (Du Pont Company, 1998).

27. J. Fabien et al., "AC Impedance Based Chemical Sensors for Organic Solvent Vapours," Sensors and Actuators B, 363–369 ( 1996).

28. R. Igreja and C.J. Dias, "Dielectric Response of Interdigital Chemocapacitors: The Role of Sensitive Layer Thickness," Sensors and Actuators B 115 (1), 69–78 2005.

29. G.Hagen et al., "Selective Impedance Based Gas Sensors for Hydrocarbons Using ZSM-5 Zeolite Films With Chromium(III)Oxide Interface," Sensors and Actuators B 119 (2), 441–448 (2006).

30. K. Sundara-Rajan, L. Byrd, and A. V. Mamishev, "Moisture Content Estimation in Paper Pulp Using Fringing Field Impedance Spectroscopy," IEEE Sensors Journal 4 (3), 378–383, June 2004.

31. K. Sundara-Rajan, L. Byrd, and A. V. Mamishev, "Estimation of Moisture Content in Paper Pulp Containing Calcium Carbonate Using Fringing Field Impedance Spectroscopy," Proceedings of 58th Appita Annual Conference (Canberra, Australia, vol. 2, 2004), pp. 413–420.

32. K. Sundara-Rajan, L. Byrd, and A. V. Mamishev, "Measuring Moisture, Fiber, and Titanium Dioxide in Pulp With Impedance Spectroscopy," TAPPI Journal 4 (2), 23–27 (Feb. 2005).

33. J. K. Moscicki and G. Williams, "Model Calculations of the Phase Behaviour of Rod-Like Particles in Solution: Polydisperse Systems Having Asymmetric Distributions of Rod-Lengths," Polymer 24 (1), 85–90 (1983).

34. J. K. Moscicki and G. Williams, "Concentrated Solutions of Polydisperse Rodlike Polymers in the Isotropic and Lyotropic Liquid-Crystalline Phases. II. Model Simulation of the Dielectric Relaxation Behavior of Poly(n -Alkylisocyanates) in Toluene and Comparison with Experimental Results," J. Polymer Sci. Polymer Phys. 21 (2), 213–231 (Feb. 1983).

35. J. K. Moscicki and G. Williams, "Concentrated Solutions of Polydisperse Rodlike Polymers in the Isotropic and Lyotropic Liquid-Crystalline Phases. I. The Effects of Molecular Length Distribution on Phase Behavior," J. Polymer Sci. Polymer Phys. 21 (2), 197–212 (Feb. 1983).

36. J.P. Runt and J.J. Fitzgerald, Dielectric Spectroscopy of Polymeric Materials: Fundamentals and Applications (American Chemical Society Washington DC, 1997).

37. G. Williams and D. C. Watts, "Non-Symmetrical Dielectric Relaxation Behavior Arising From a Simple Empirical Decay Function," Transactions of Faraday Society 66, 80–85 (1970).


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