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Updated: Apr 27, 2026

Atomic Force Microscopy Cantilever-Based Nanoindentation: Mechanical Property Measurements at the Nanoscale in Air and Fluid
Published on: December 2, 2022
Microscopic analysis of current and mechanical properties of nafion® studied by atomic force microscopy
Renate Hiesgen1, Stefan Helmly2, Ines Galm3
1University of Applied Sciences Esslingen, Kanalstrasse 33, Esslingen 73728, Germany. renate.hiesgen@hs-esslingen.de.
Abstract:
The conductivity of fuel cell membranes as well as their mechanical properties at the nanometer scale were characterized using advanced tapping mode atomic force microscopy (AFM) techniques. AFM produces high-resolution images under continuous current flow of the conductive structure at the membrane surface and provides some insight into the bulk conducting network in Nafion membranes. The correlation of conductivity with other mechanical properties, such as adhesion force, deformation and stiffness, were simultaneously measured with the current and provided an indication of subsurface phase separations and phase distribution at the surface of the membrane. The distribution of conductive pores at the surface was identified by the formation of water droplets. A comparison of nanostructure models with high-resolution current images is discussed in detail.
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