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Updated: Mar 6, 2026

Studying Large Amplitude Oscillatory Shear Response of Soft Materials
Published on: April 25, 2019
Spatially Distributed Rheological Properties in Confined Polymers by Noncontact Shear
Mithun Chowdhury, Yunlong Guo1, Yucheng Wang
1University of Michigan - Shanghai Jiao Tong University Joint Institute, Shanghai Jiao Tong University , Shanghai 200240, P. R. China.
Abstract:
When geometrically confined to the nanometer length scale, a condition in which a large portion of the material is in the nanoscale vicinity of interfaces, polymers can show astonishing changes in physical properties. In this investigation, we employ a unique noncontact capillary nanoshearing method to directly probe nanoresolved gradients in the rheological response of ultrathin polymer films as a function of temperature and stress. Results show that ultrathin polymer films, in response to an applied shear stress, exhibit a gradient in molecular mobility and viscosity that originates at the interfaces. We demonstrate, via molecular dynamics simulations, that these gradients in molecular mobility reflect gradients in the average segmental relaxation time and the glass-transition temperature.
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