Robert S. Hoy, Ph.D.
Affiliations: | 2008 | Johns Hopkins University, Baltimore, MD |
Area:
non-equilibrium processesGoogle:
"Robert Hoy"Mean distance: 14.71 | S | N | B | C | P |
Parents
Sign in to add mentorMark O. Robbins | grad student | 2008 | Johns Hopkins | |
(Effect of entanglements on mechanical properties of glassy polymers.) | ||||
Glenn H. Fredrickson | post-doc | 2007-2009 | UC Santa Barbara (Chemistry Tree) |
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Publications
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Dietz JD, Nan K, Hoy RS. (2022) Unexpected Ductility in Semiflexible Polymer Glasses with Entanglement Length Equal to Their Kuhn Length. Physical Review Letters. 129: 127801 |
Dietz JD, Kröger M, Hoy RS. (2022) Validation and Refinement of Unified Analytic Model for Flexible and Semiflexible Polymer Melt Entanglement. Macromolecules. 55: 3613-3626 |
Dietz JD, Hoy RS. (2022) Facile equilibration of well-entangled semiflexible bead-spring polymer melts. The Journal of Chemical Physics. 156: 014103 |
Dietz JD, Hoy RS. (2020) Two-stage athermal solidification of semiflexible polymers and fibers. Soft Matter |
Salcedo ED, Nguyen HT, Hoy RS. (2019) Factors influencing thermal solidification of bent-core trimers. The Journal of Chemical Physics. 151: 134501 |
Griffith AD, Hoy RS. (2019) Densest versus jammed packings of bent-core trimers. Physical Review. E. 100: 022903 |
Hoy RS. (2019) Thermalization of plastic flow versus stationarity of thermomechanical equilibrium in SGR theory. The European Physical Journal. E, Soft Matter. 42: 2 |
Zou W, Moghadam S, Hoy RS, et al. (2019) Multiscale Modeling of Sub-Entanglement-Scale Chain Stretching and Strain Hardening in Deformed Polymeric Glasses Macromolecules. 52: 9248-9260 |
Nguyen HT, Hoy RS. (2018) Effect of the Ratio lK/p on Glassy-Polymeric Shear Deformation Mechanisms Macromolecules. 51: 4370-4380 |
Hoy RS. (2017) Thermalized formulation of soft glassy rheology. Physical Review. E. 96: 063001 |