Awaneesh Singh
Indian Institute of Technology BHU, Institute of Chemical Technology, Jawaharlal Nehru University, University of Pittsburgh
About
Dr. Awaneesh Singh is an Associate Professor of Physics at the Indian Institute of Technology (BHU), Varanasi, India. He received his Ph.D. in Physics from Jawaharlal Nehru University, New Delhi, followed by postdoctoral research at the University of Massachusetts Amherst and the University of Pittsburgh, USA. He joined the Department of Physics at IIT (BHU) in 2018.
Dr. Singh’s research focuses on Soft Matter and Nonequilibrium Statistical Physics, particularly the structure, kinetics, and morphology of phase separation in multicomponent and far-from-equilibrium systems. His work investigates fundamental processes such as nucleation, spinodal decomposition, late-stage growth, and coarsening using analytical approaches and advanced simulation techniques, including coarse-grained field theories, Monte Carlo, Molecular Dynamics, Dissipative Particle Dynamics, and Gel Lattice Spring Models. His current research interests include: (1) computational design of smart and responsive materials; (2) phase separation dynamics in polymeric and complex fluid systems; and (3) nonequilibrium self-assembly driven by chemical reactions and photo-controlled radical polymerization.
Dr. Singh is also committed to teaching and mentoring. He has taught a range of undergraduate and graduate courses and supervised multiple student research projects.
Employment
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Indian Institute of Technology BHU Assistant Professor2018 - Present
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Institute of Chemical Technology Assistant Professor2017 - 2018
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University of Pittsburgh Postdoc2014 - 2016
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University of Massachusetts Amherst Posdoc2011 - 2013
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Indian Institute of Science Postdoc2010 - 2011
Education
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Jawaharlal Nehru University PhD2004 - 2010
Projects & Funding
Projects & funding information is unavailable.
Publications (44)
- Topology and rigidity controlled coarsening in miktoarm star polymer melts Save
- Topology-Regulated Coarsening and Interfacial Morphologies in Amphiphilic Polymer-Fluid Blends Save
- Reaction-tuned segregation kinetics in binary fluids: Mesoscale insights Save
- Structural and Dynamical Insights into Self-Assembly Kinetics in Miktoarm Star Polymer Solutions: Role of Arm Size and Topology Save
- Photoinduced phase separation and morphology control in amphiphilic dimer melts Save
- Stabilizing Pickering Emulsions with Polymer Brush-Modified Tricompartmental Anisotropic Particles: A Simulation and Experimental Study Save
- Shear-driven segregation kinetics in binary polymer blends: Insights from dissipative-particle-dynamics simulations Save
- Architectural influence of polymer brush-modified tri-compartmental anisotropic particles in stabilizing pickering emulsion Save
- Self-assembly kinetics of miktoarm star polymers in diverse solvent environments: insights from dissipative particle dynamics simulations Save
- Growth kinetics and morphology characterization of binary polymeric fluid under random photo-illumination Save