On dissipation of quartz crystal microbalance as a mechanical spectroscopy toolReport as inadecuate

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Spectroscopy - Volume 18 2004, Issue 4, Pages 537-544

Department of Applied Physics, Chalmers University of Technology and Göteborg University, SE–412 96, Göteborg, Sweden

Copyright © 2004 Hindawi Publishing Corporation. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.


We report on theoretical analysis of dissipative effects in quartz crystal resonator applications to the dynamics of complex biological fluids and soft polymer films. As a mechanical spectroscopy tool, the quartz resonator can probe the storage and loss moduli μω of a thin material sample in small amplitude oscillations where polymers exhibit linear viscoelasticity. We show how viscosity internal friction and slippage interfacial friction of the sample affect the acoustical characteristics of the quartz resonator. With respect to biosensor’s application, we present rigorous expressions for the resonant frequency and damping of the quartz crystal which allow to quantify friction effects and even distinguish between them in resonator measurements performing on various frequencies. Possible application of the results in electronic nose and electronic tongue sensors is discussed.

Author: M. V. Voinova, M. Jonson, and B. Kasemo

Source: https://www.hindawi.com/


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