Meenakshi Dutt, Ph.D.
Affiliations: | Duke University, Durham, NC |
Area:
Granular Materials, Nonlinear DynamicsGoogle:
"Meenakshi Dutt"Mean distance: 16.37 | S | N | B | C | P |
Parents
Sign in to add mentorRobert P. Behringer | grad student | 2002 | Duke | |
(Numerical studies of substrate friction in granular materials.) |
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Publications
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Mushnoori S, Logan JA, Tkachenko AV, et al. (2022) Controlling morphology in hybrid isotropic/patchy particle assemblies. The Journal of Chemical Physics. 156: 024501 |
Yu X, Dutt M. (2020) Implementation of dynamic coupling in hybrid Molecular Dynamics–Lattice Boltzmann approach: Modeling aggregation of amphiphiles Computer Physics Communications. 1: 107287 |
Aydin F, Chu X, Greenstein J, et al. (2018) A review on phospholipid vesicles flowing through channels Mrs Communications. 8: 718-726 |
Chu X, Yu X, Greenstein J, et al. (2017) Flow-Induced Shape Reconfiguration, Phase Separation and Rupture of Bio-Inspired Vesicles. Acs Nano |
Chu X, Aydin F, Dutt M. (2016) Modeling Interactions Between Multicomponent Vesicles and Anti-Microbial Peptide-Inspired Nanoparticles. Acs Nano |
Aydin F, Chu X, Uppaladadium G, et al. (2016) Self-Assembly and Critical Aggregation Concentration Measurements of ABA Triblock Copolymers with Varying B Block Types: Model Development, Prediction and Validation. The Journal of Physical Chemistry. B |
Aydin F, Uppaladadium G, Dutt M. (2016) Harnessing steric hindrance to control interfacial adsorption of patchy nanoparticles onto hairy vesicles. Colloids and Surfaces. B, Biointerfaces. 141: 458-466 |
Chong L, Aydin F, Dutt M. (2015) Implicit solvent coarse-grained model of polyamidoamine dendrimers: Role of generation and pH. Journal of Computational Chemistry |
Aydin F, Uppaladadium G, Dutt M. (2015) Harnessing Nanoscale Confinement to Design Sterically Stable Vesicles of Specific Shapes via Self-Assembly. The Journal of Physical Chemistry. B. 119: 10207-15 |
Aydin F, Uppaladadium G, Dutt M. (2015) The design of shape-tunable hairy vesicles. Colloids and Surfaces. B, Biointerfaces. 128: 268-75 |