Dielectric parameters relevant to microwave dielectric heating
- 1 January 1998
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Chemical Society Reviews
- Vol. 27 (3) , 213-224
- https://doi.org/10.1039/a827213z
Abstract
Microwave dielectric heating is rapidly becoming an established procedure in synthetic chemistry. This review summarises the basic theory underlying microwave dielectric heating and collates the dielectric data for a wide range of organic solvents which are commmonly used in microwave syntheses. The loss tangents of the solvents, which may be related to the ability of the solvent to absorb energy in a microwave cavity, depend on the relaxation times of the molecules. These relaxation times depend critically on the nature of the functional groups and the volume of the molecule. Functional groups capable of hydrogenbonding have a particularly strong influence on the relaxation times. The relaxation times of solvents decrease as the temperature of the solvent is increased. Loss tangent data at different microwave frequencies are also presented and discussed.Keywords
This publication has 17 references indexed in Scilit:
- Microwave chemistryChemical Society Reviews, 1997
- The dielectric properties of biological tissues: I. Literature surveyPhysics in Medicine & Biology, 1996
- Admittance models for open ended coaxial probes and their place in dielectric spectroscopyPhysics in Medicine & Biology, 1994
- A comparison of reaction kinetics observed under microwave irradiation and conventional heatingThe Journal of Organic Chemistry, 1993
- Specific activation by microwaves: myth or reality?The Journal of Organic Chemistry, 1992
- A model for the complex permittivity of water at frequencies below 1 THzInternational Journal of Infrared and Millimeter Waves, 1991
- Tilden Lecture. Applications of microwave dielectric heating effects to synthetic problems in chemistryChemical Society Reviews, 1991
- Biological effects of microwaves and radio wavesIEE Proceedings A Physical Science, Measurement and Instrumentation, Management and Education, Reviews, 1981
- Equations for Calculating the Dielectric Constant of Saline Water (Correspondence)IEEE Transactions on Microwave Theory and Techniques, 1971
- Dielectric dispersion in aqueous solutions of oxyhaemoglobin and carboxyhaemoglobinBiochemical Journal, 1971