SD
Sudip Dasgupta
National Institute of Technology Rourkela, University of Pennsylvania, Washington State University, Indian Institute of Technology Kanpur, University of Calcutta
Employment
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National Institute of Technology Rourkela Assistant Professor2011 - Present
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University of Pennsylvania Post doctoral research associate2008 - 2009
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Washington State University Graduate Research Assistant2005 - 2008
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Auburn University Graduate Research Assistant2004 - 2005
Education
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Washington State University Ph D2005 - 2008
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Indian Institute of Technology Kanpur M. Tech.2001 - 2003
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University of Calcutta B.Tech.1998 - 2001
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University of Calcutta B. Sc.1995 - 1998
Projects & Funding
Projects & funding information is unavailable.
Publications (45)
- Preparation, characterization, and bioactivity of reinforced monetite with chitosan-gelatin electrospun composite scaffold for bone tissue engineering Save
- Enhanced bone regeneration using Antheraea mylitta silk fibroin and chitosan based scaffold: in-vivo and in-vitro study Save
- Gelatin/monetite electrospun scaffolds to regenerate bone tissue: Fabrication, characterization, and in-vitro evaluation Save
- Physicochemical, mechanical, dielectric, and biological properties of sintered hydroxyapatite/barium titanate nanocomposites for bone regeneration Save
- Optimization of parameters for adsorption of acid yellow 36 dye onto nitrate‐intercalated MgAl LDH nanoparticle using Box–Behnken design Save
- In-vitro antimicrobial & biocompatibility study of Spherical 52S4.6 Submicron-Bioactive glass synthesized by Stöber Method: Effect of Ag Doping Save
- Enhancing physicochemical, mechanical, and bioactive performances of monetite nanoparticles reinforced chitosan‐PEO electrospun scaffold for bone tissue engineering Save
- Effect of time, pH, and temperature on kinetics for adsorption of methyl orange dye into the modified nitrate intercalated MgAl LDH adsorbent Save
- Monetite addition into gelatin based freeze-dried scaffolds for improved mechanical and osteogenic properties Save
- Mechanical, Electrical, and Biological Properties of Mechanochemically Processed Hydroxyapatite Ceramics Save