Nicholas B. Tito, Ph.D.
Affiliations: | 2013 | Chemistry | Dartmouth College, Hanover, NH, United States |
Area:
Statistical mechanics of polymer melts, glasses, and blends. Theory and simulation applied to problems of blend behavior, and glassy thin films and mixturesGoogle:
"Nicholas Tito"Mean distance: 10.27
Parents
Sign in to add mentorJane E. G. Lipson | grad student | 2013 | Dartmouth | |
(Using theory to predict phase behaviour in liquids, copolymer melts, and ultrathin polymer films.) |
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Publications
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Kusters GLA, Tito NB, Storm C, et al. (2021) Controlling permeation in electrically deforming liquid crystal network films: A dynamical Landau theory. Physical Review. E. 104: 054701 |
Kusters GLA, Verheul IP, Tito NB, et al. (2020) Dynamical Landau-de Gennes theory for electrically-responsive liquid crystal networks. Physical Review. E. 102: 042703 |
Curk T, Tito NB. (2020) First-order "hyper-selective" binding transition of multivalent particles under force. Journal of Physics. Condensed Matter : An Institute of Physics Journal |
Tito NB, Creton C, Storm C, et al. (2019) Harnessing entropy to enhance toughness in reversibly crosslinked polymer networks. Soft Matter |
Tito NB, Storm C, Ellenbroek WG. (2017) Self-Consistent Field Lattice Model for Polymer Networks. Macromolecules. 50: 9788-9795 |
Liu D, Tito NB, Broer DJ. (2017) Protruding organic surfaces triggered by in-plane electric fields. Nature Communications. 8: 1526 |
Napolitano S, Glynos E, Tito NB. (2017) Glass transition of polymers in bulk, confined geometries, and near interfaces. Reports On Progress in Physics. Physical Society (Great Britain). 80: 036602 |
Tito NB, Milner ST, Lipson JE. (2015) Enhanced diffusion and mobile fronts in a simple lattice model of glass-forming liquids. Soft Matter. 11: 7792-801 |
Tito NB, Frenkel D. (2014) Optimizing the Selectivity of Surface-Adsorbing Multivalent Polymers. Macromolecules. 47: 7496-7509 |
Tito NB, Lipson JEG, Milner ST. (2013) Lattice model of mobility at interfaces: Free surfaces, substrates, and bilayers Soft Matter. 9: 9403-9413 |