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Harnessing Ionic Complexity: A Modeling Approach for Hierarchical Ionic Circuit Design
Max Tepermeister, Meredith N. Silberstein
Since the 1950s, soft ionic devices have evolved from individual components to an expanding library of sensors, actuators, signal transmitters, and processors. However, integrating…
A foundational framework for the mesoscale modeling of dynamic elastomers and gels
Robert J. Wagner, Meredith N. Silberstein
Discrete mesoscale network models, in which explicitly modeled polymer chains are replaced by implicit pairwise potentials, are capable of predicting the macroscale mechanical resp…
A constitutive model for elastomers tailored by ionic bonds and entanglements
Zhongtong Wang, Hongyi Cai, Meredith N. Silberstein
Over the past decade or two, the concept has emerged of using multiple types of weak interactions simultaneously to enhance the mechanical properties of elastomers. These weak inte…
Statistical mechanical constitutive theory of polymer networks: The inextricable links between distribution, behavior, and ensemble
Michael R. Buche, Meredith N. Silberstein
A fundamental theory is presented for the mechanical response of polymer networks undergoing large deformation which seamlessly integrates statistical mechanical principles with ma…