Dynamic electrostatic force microscopy in liquid media

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Abstract

We present the implementation of dynamic electrostatic force microscopy in liquid media. This implementation enables the quantitative imaging of local dielectric properties of materials in electrolyte solutions with nanoscale spatial resolution. Local imaging capabilities are obtained by probing the frequency-dependent and ionic concentration-dependent electrostatic forces at high frequency (>1 MHz), while quantification of the interaction forces is obtained with finite-element numerical calculations. The results presented open a wide range of possibilities in a number of fields where the dielectric properties of materials need to be probed at the nanoscale and in a liquid environment. © 2012 American Institute of Physics.

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Gramse, G., Edwards, M. A., Fumagalli, L., & Gomila, G. (2012). Dynamic electrostatic force microscopy in liquid media. Applied Physics Letters, 101(21). https://doi.org/10.1063/1.4768164

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