Nimitt G. Patel, Ph.D.
Affiliations: | 2014 | Materials Science and Engineering | Clarkson University, Potsdam, NY, United States |
Area:
Materials Science Engineering, Nanotechnology, Biomedical EngineeringGoogle:
"Nimitt Patel"Parents
Sign in to add mentorPhilip A. Yuya | grad student | 2014 | Clarkson University | |
(Fabrication and characterization of gold nanoparticle reinforced Chitosan nanocomposites for biomedical applications.) |
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Publications
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Venkatanarayanan RI, Krishnan S, Sreeram A, et al. (2016) Macromol. Theory Simul. 3/2016 Macromolecular Theory and Simulations. 25: 215-215 |
Venkatanarayanan RI, Krishnan S, Sreeram A, et al. (2016) Simulated Dilatometry and Static Deformaton Prediction of Glass Transition and Mechanical Properties of Polyacetylene and Poly(para-phenylene vinylene) Macromolecular Theory and Simulations |
Patel NG, Sreeram A, Venkatanarayanan RI, et al. (2015) Corrigendum to “Elevated temperature nanoindentation characterization of poly(para-phenylene vinylene) conjugated polymer films” [Polym. Test. 41 (2015) 17–25] Polymer Testing. 42: 234 |
Patel NG, Sreeram A, Venkatanarayanan RI, et al. (2015) Elevated temperature nanoindentation characterization of poly(para-phenylene vinylene) conjugated polymer films Polymer Testing. 41: 17-25 |
Patel NG, Kumar A, Jayawardana VN, et al. (2014) Fabrication, nanomechanical characterization, and cytocompatibility of gold-reinforced chitosan bio-nanocomposites. Materials Science & Engineering. C, Materials For Biological Applications. 44: 336-44 |
Yuya PA, Patel NG. (2014) Analytical model for nanoscale viscoelastic properties characterization using dynamic nanoindentation Philosophical Magazine. 94: 2505-2519 |
Sreeram A, Patel NG, Venkatanarayanan RI, et al. (2014) Thermogravimetric study of the kinetics of formation of poly(para-phenylene vinylene) by thermal conversion of a sulfonium precursor Polymer Testing. 37: 170-178 |
Sreeram A, Patel NG, Venkatanarayanan RI, et al. (2014) Nanomechanical properties of poly(para-phenylene vinylene) determined using quasi-static and dynamic nanoindentation Polymer Testing. 37: 86-93 |