skip to main content
OSTI.GOV title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Linear and nonlinear rheology and structural relaxation in dense glassy and jammed soft repulsive pNIPAM microgel suspensions

Journal Article · · Soft Matter
DOI:https://doi.org/10.1039/C8SM02014K· OSTI ID:1634191

We present an integrated experimental and quantitative theoretical study of the mechanics of self-crosslinked, slightly charged, repulsive pNIPAM microgel suspensions over a very wide range of concentrations (c) that span the fluid, glassy and putative “soft jammed” regimes. In the glassy regime we measure a linear elastic dynamic shear modulus over 3 decades which follows an apparent power law concentration dependence G' ~ c5.64, a variation that appears distinct from prior studies of crosslinked ionic microgel suspensions. At very high concentrations there is a sharp crossover to a nearly linear growth of the modulus. To theoretically understand these observations, we formulate an approach to address all three regimes within a single conceptual Brownian dynamics framework. A minimalist single particle description is constructed that allows microgel size to vary with concentration due to steric de-swelling effects. Using a Hertzian repulsion interparticle potential and a suite of statistical mechanical theories, quantitative predictions under quiescent conditions of microgel collective structure, dynamic localization length, elastic modulus, and the structural relaxation time are made. Based on a constant inter-particle repulsion strength parameter which is determined by requiring the theory to reproduce the linear elastic shear modulus over the entire concentration regime, we demonstrate good agreement between theory and experiment. Testable predictions are then made. We also measured nonlinear rheological properties with a focus on the yield stress and strain. A theoretical analysis with no adjustable parameters predicts how the quiescent structural relaxation time changes under deformation, and how the yield stress and strain change as a function of concentration. Reasonable agreement with our observations is obtained. To the best of our knowledge, this is the first attempt to quantitatively understand structure, quiescent relaxation and shear elasticity, and nonlinear yielding of dense microgel suspensions using microscopic force based theoretical methods that include activated hopping processes. Here, we expect our approach will be useful for other soft polymeric particle suspensions in the core–shell family.

Research Organization:
Univ. of Illinois at Urbana-Champaign, IL (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES)
Grant/Contract Number:
FG02-07ER46471
OSTI ID:
1634191
Alternate ID(s):
OSTI ID: 1491277
Journal Information:
Soft Matter, Vol. 15, Issue 5; ISSN 1744-683X
Publisher:
Royal Society of ChemistryCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 38 works
Citation information provided by
Web of Science

References (47)

Phase behaviour of concentrated suspensions of nearly hard colloidal spheres journal March 1986
A micromechanical model to predict the flow of soft particle glasses journal September 2011
Dynamics and rheology of colloidal star polymers journal January 2010
Strain softening, yielding, and shear thinning in glassy colloidal suspensions journal February 2005
Theory of nonlinear elasticity, stress-induced relaxation, and dynamic yielding in dense fluids of hard nonspherical colloids journal April 2012
Design of yield-stress fluids: a rheology-to-structure inverse problem journal January 2017
The physics of the colloidal glass transition journal May 2012
Microgel particles as model colloids: theory, properties and applications journal February 1999
Anomalous Viscous Loss in Emulsions journal April 1996
Nonlinear elasticity and yielding of depletion gels journal October 2005
Jamming and overpacking fuzzy microgels: Deformation, interpenetration, and compression journal October 2017
Tunable dynamic fragility and elasticity in dense suspensions of many-arm-star polymer colloids journal June 2010
Elasticity and clustering in concentrated depletion gels journal October 2004
High‐Frequency Elastic Moduli of Simple Fluids journal December 1965
Elasticity of compressed microgel suspensions journal January 2013
Influence of Reaction Conditions on the Synthesis of Self-Cross-Linked N -Isopropylacrylamide Microgels journal June 2003
Glassy dynamics and mechanical response in dense fluids of soft repulsive spheres. I. Activated relaxation, kinetic vitrification, and fragility journal May 2011
Transport coefficients in glassy colloidal fluids journal July 2003
Effective interactions between soft-repulsive colloids: Experiments, theory, and simulations journal March 2014
Glassy dynamics and mechanical response in dense fluids of soft repulsive spheres. II. Shear modulus, relaxation-elasticity connections, and rheology journal May 2011
Thermal vestige of the zero-temperature jamming transition journal May 2009
Microscopic theory of gelation and elasticity in polymer–particle suspensions journal April 2004
Nonlinear Elasticity and Yielding of Nanoparticle Glasses journal March 2006
Yield stress materials in soft condensed matter journal August 2017
Cross-Linker-Free N -Isopropylacrylamide Gel Nanospheres journal June 2003
The glass and jamming transitions of soft polyelectrolyte microgel suspensions journal January 2016
Tunable rheology of dense soft deformable colloids journal December 2014
Does size matter? Elasticity of compressed suspensions of colloidal- and granular-scale microgels journal January 2012
Dynamical Theory of Segmental Relaxation and Emergent Elasticity in Supercooled Polymer Melts journal March 2015
Ageing and yield behaviour in model soft colloidal glasses
  • Christopoulou, C.; Petekidis, G.; Erwin, B.
  • Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, Vol. 367, Issue 1909 https://doi.org/10.1098/rsta.2009.0166
journal December 2009
Liquid-State Theory of Semidilute and Concentrated Polymer Solutions journal April 1998
Fluid–solid transitions in soft-repulsive colloids journal January 2013
Ultrasoft, highly deformable microgels journal January 2015
Swelling, structure, and phase stability of compressible microgels journal January 2016
Elastically cooperative activated barrier hopping theory of relaxation in viscous fluids. I. General formulation and application to hard sphere fluids journal May 2014
Glass Formation and Shear Elasticity in Dense Suspensions of Repulsive Anisotropic Particles journal July 2010
Observation of a glass transition in suspensions of spherical colloidal particles journal November 1987
Doubly Temperature Sensitive Core−Shell Microgels journal October 2003
Elastic properties of soft particle pastes journal May 2006
Rheology of soft colloids across the onset of rigidity: scaling behavior, thermal, and non-thermal responses journal January 2014
Derivation of a microscopic theory of barriers and activated hopping transport in glassy liquids and suspensions journal December 2005
Molecular Theories of Segmental Dynamics and Mechanical Response in Deeply Supercooled Polymer Melts and Glasses journal August 2010
Long-term aging behaviors in a model soft colloidal system journal January 2017
Elastically cooperative activated barrier hopping theory of relaxation in viscous fluids. II. Thermal liquids journal May 2014
The Physics of the Colloidal Glass Transition text January 2011
Elastically Cooperative Activated Barrier Hopping Theory of Relaxation in Viscous Fluids. I. General Formulation and Application to Hard Sphere Fluids text January 2014
Swelling, Structure, and Phase Stability of Compressible Microgels text January 2016

Cited By (2)

Directed Printing and Reconfiguration of Thermoresponsive Silica‐pNIPAM Nanocomposites journal June 2019
Directed Printing and Reconfiguration of Thermoresponsive Silica-pNIPAM Nanocomposites journal July 2019

Figures / Tables (18)


Similar Records

Linear and nonlinear viscoelasticity of concentrated thermoresponsive microgel suspensions
Journal Article · Sun May 23 00:00:00 EDT 2021 · Journal of Colloid and Interface Science · OSTI ID:1634191

Thermoresponsive Stiffening with Microgel Particles in a Semiflexible Fibrin Network
Journal Article · Tue Apr 09 00:00:00 EDT 2019 · Macromolecules · OSTI ID:1634191

Viscoelastic necking dynamics between attractive microgels
Journal Article · Tue Mar 15 00:00:00 EDT 2022 · Journal of Colloid and Interface Science · OSTI ID:1634191

Related Subjects