Projects per year
Personal profile
Research interests
Computer Science / Information Technology - Computational science and engineering
Chemistry - Polymers and complex fluids
Chemical Engineering - Complex coacervates and protein condensates
Chemical Engineering - Charge transport
Chemical Engineering - Interfacial phenomena
Computer Science / Information Technology - Artificial intelligence
Chemistry - Polymers and complex fluids
Chemical Engineering - Complex coacervates and protein condensates
Chemical Engineering - Charge transport
Chemical Engineering - Interfacial phenomena
Computer Science / Information Technology - Artificial intelligence
Related documents
Education/Academic qualification
PhD in Mechanical Engineering, PhD, State University of New York Binghamton University
2020
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Collaborations and top research areas from the last five years
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Projects
- 1 Active
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Molecular Simulation Study of Complex Coacervates for Underwater Adhesion
CHEN, S. (PI)
National Natural Science Foundation of China
1/01/26 → 31/12/28
Project: Research
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GCMe: Efficient Implementation of the Gaussian Core Model with Smeared Electrostatic Interactions for Molecular Dynamics Simulations of Soft Matter Systems
Ye, B. B., Chen, S. & Wang, Z. G., 13 Aug 2024, In: Journal of Chemical Theory and Computation. 20, 15, p. 6870-6880 11 p.Research output: Contribution to journal › Journal Article › peer-review
Open Access3 Citations (Scopus) -
Hydrodynamics in Semidilute Polyelectrolyte Solutions and Complex Coacervates
Chen, S. & Wang, Z.-G., 2024, (arXiv).Research output: Working paper › Preprint
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Charge Asymmetry Suppresses Coarsening Dynamics in Polyelectrolyte Complex Coacervation
Chen, S. & Wang, Z. G., 24 Nov 2023, In: Physical Review Letters. 131, 21, 218201.Research output: Contribution to journal › Journal Article › peer-review
18 Citations (Scopus) -
Harnessing Water Entropy and Electric Field to Design Aqueous Polymer Systems
Chen, S. & Wang, Z. G., 2023.Research output: Contribution to conference › Conference Paper › peer-review
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Polyelectrolyte Knot Delocalization Induced by Counterion Condensation
Chen, S. & Zhou, T., 2023, (arXiv).Research output: Working paper › Preprint
Awards
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HKUST-POSTECH Joint Research Seed Grant Program & Global Knowledge Network Awards
CHEN, S. (Recipient), Feb 2025
Prize: Other Research Award and Prize