Related Experiment Video
Updated: Aug 28, 2025

Printing Thermoresponsive Reverse Molds for the Creation of Patterned Two-component Hydrogels for 3D Cell Culture
Published on: July 10, 2013
A Molecular Description of Hydrogel Forming Polymers for Cement-Based Printing Paste Applications
Hajar Taheri-Afarani1, Eugene Mamontov2, William R Carroll3
1Department of Chemical Engineering, Tennessee Technological University, 1 William L. Jones Dr., Cookeville, TN 38505, USA.
Abstract:
This research endeavors to link the physical and chemical characteristics of select polymer hydrogels to differences in printability when used as printing aids in cement-based printing pastes. A variety of experimental probes including differential scanning calorimetry (DSC), NMR-diffusion ordered spectroscopy (DOSY), quasi-elastic neutron scattering (QENS) using neutron backscattering spectroscopy, and X-ray powder diffraction (XRD), along with molecular dynamic simulations, were used. Conjectures based on objective measures of printability and physical and chemical-molecular characteristics of the polymer gels are emerging that should help target printing aid selection and design, and mix formulation. Molecular simulations were shown to link higher hydrogen bond probability and larger radius of gyration to higher viscosity gels. Furthermore, the higher viscosity gels also produced higher elastic properties, as measured by neutron backscattering spectroscopy.
Related Concept Videos
Porosity in Cement Paste
The balance of water to cement in the mix is...
Hydration of Cement
Pore Size Distribution
Adequate...

