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Wengang Zhang
Wengang Zhang
National Cancer Institute
Verified email at nih.gov
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Cited by
Cited by
Year
Why we need to look beyond the glass transition temperature to characterize the dynamics of thin supported polymer films
W Zhang, JF Douglas, FW Starr
Proceedings of the National Academy of Sciences of the United States of …, 2018
592018
Why We Need to Look Beyond the Glass Transition Temperature to Characterize the Dynamics of Thin Supported Polymer Films
W Zhang, JF Starr, Francis W., Douglas
Bulletin of the American Physical Society, 2018
592018
The interfacial zone in thin polymer films and around nanoparticles in polymer nanocomposites
W Zhang, H Emamy, ...
The Journal of Chemical Physics 151 (12), 124705, 2019
422019
Effects of a “bound” substrate layer on the dynamics of supported polymer films
W Zhang, JF Douglas, FW Starr
The Journal of Chemical Physics 147 (4), 044901, 2017
402017
Collective motion in the interfacial and interior regions of supported polymer films and its relation to relaxation
W Zhang, FW Starr, JF Douglas
The Journal of Physical Chemistry B 123 (27), 5935-5941, 2019
372019
What does the instantaneous normal mode spectrum tell us about dynamical heterogeneity in glass-forming fluids?
W Zhang, JF Douglas, FW Starr
The Journal of Chemical Physics 151 (18), 2019
302019
Dynamical heterogeneity in a vapor-deposited polymer glass
W Zhang, JF Douglas, FW Starr
The Journal of Chemical Physics 146 (20), 2017
272017
Reconciling computational and experimental trends in the temperature dependence of the interfacial mobility of polymer films
W Zhang, FW Starr, JF Douglas
The Journal of Chemical Physics 152 (12), 2020
202020
Activation free energy gradient controls interfacial mobility gradient in thin polymer films
W Zhang, FW Starr, JF Douglas
The Journal of Chemical Physics 155 (17), 2021
182021
Structure and dynamics of star polymer films from coarse-grained molecular simulations
W Zhang, JF Douglas, A Chremos, FW Starr
Macromolecules 54 (12), 5344-5353, 2021
142021
How does monomer structure affect the interfacial dynamics of supported ultrathin polymer films?
AN Storey, W Zhang, JF Douglas, FW Starr
Macromolecules 53 (21), 9654-9664, 2020
92020
Modeling short-chain branched polyethylenes in dilute solution under variable solvent quality conditions: Basic configurational properties
W Zhang, F Vargas-Lara, SV Orski, KL Beers, JF Douglas
Polymer 217, 123429, 2021
82021
Reactive molecular dynamics simulations of the depolymerization of polyethylene using graphene-oxide-supported platinum nanoparticles
W Zhang, FW Starr, KL Beers, JF Douglas
The Journal of Physical Chemistry A 126 (20), 3167-3173, 2022
72022
The effect of nanoparticle softness on the interfacial dynamics of a model polymer nanocomposite
Y Zhu, A Giuntoli, W Zhang, Z Lin, S Keten, FW Starr, JF Douglas
The Journal of Chemical Physics 157 (9), 2022
62022
Protein conformational ensembles in function: roles and mechanisms
R Nussinov, Y Liu, W Zhang, H Jang
RSC Chemical Biology 4 (11), 850-864, 2023
52023
How dispersity from step-growth polymerization affects polymer dynamics from coarse-grained molecular simulations
W Zhang, JF Douglas, FW Starr
Macromolecules 55 (22), 9901-9907, 2022
52022
The interfacial layers around nanoparticle and its impact on structural relaxation and glass transition in model polymer nanocomposites
W Zhang, H Emamy, F Vargas-Lara, BAP Betancourt, D Meng, FW Starr, ...
Theory and modeling of polymer nanocomposites, 101-131, 2020
52020
What does the Tg of thin polymer films really tell us?
W Zhang, JF Douglas, FW Starr
AIP Conference Proceedings 1981 (1), 020083, 2018
52018
Glass Transition and Dynamics of Polymers in Nanoconfinement
W Zhang
22018
Cell phenotypes can be predicted from propensities of protein conformations
R Nussinov, Y Liu, W Zhang, H Jang
Current Opinion in Structural Biology 83, 102722, 2023
12023
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