DD
Dipankar Das
Also known as: D. Das
NIPER Mohali, SRM Institute of Science and Technology, IIT(ISM) Dhanbad, University of Siegen
About
Ph.D. [IIT (ISM) Dhanbad]; Postdoc [SeoulTech, South Korea]; Alexander von Humboldt Postdoc Fellow [University of Sigen, Germany].
I prepared pH, temperature, and enzyme-sensitive hydrogels, self-healing, highly stretchable, bioadhesive hydrogels for possible applicability in Drug delivery, tissue engineering, 3D-printing, and Bacteria(bio-)sensing.
Employment
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NIPER Mohali Assistant Professor2024 - Present
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SRM Institute of Science and Technology Assistant Professor2022 - 2024
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University of Siegen Alexander von Humboldt Postdoctoral Fellow2019 - 2021
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Seoul National University of Science and Technology Postdoc2016 - 2018
Education
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IIT(ISM) Dhanbad Ph.D.2012 - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (43)
- Preparation of Photoclick‐Crosslinked Modular Gelrite Hydrogel: Tuning Physico‐Chemical Characteristics, Cytocompatibility, In Vitro Cefixime Trihydrate Release, and Antimicrobial Properties Save
- Maleated Chitosan as Competent Biopolymer‐Based Corrosion Inhibitor for Copper in 3.5 wt/vol% NaCl Medium Save
- Biocompatible PVA‐GG‐MgO Nanocomposite Films: Enhanced Antibacterial and Antioxidant Properties for Potential Food Packaging Applications Save
- Evaluation of antioxidant, antimicrobial, anti-inflammatory properties and cytotoxicity of copper-doped NiO nanoparticles synthesized using biomass extract Save
- Advances in synthetic strategies and applications of polymeric hydrogels Save
- Cover Image Save
- Antimicrobial, Anticancer, and Antioxidant Activities of Zinc Oxide Nanoparticles Synthesized Using Ethyl Acetate Extract of Ageratum houstonianum Mill. Leaf Save
- Design, Characterization, and Biocompatibility of Modular Biopolymer-Based Single- and Double-Cross-Linked Networks Hydrogels Save
- Bare Eye Detection of Bacterial Enzymes of Pseudomonas aeruginosa with Polymer Modified Nanoporous Silicon Rugate Filters Save
- Impact of Surface Area on Sensitivity in Autonomously Reporting Sensing Hydrogel Nanomaterials for the Detection of Bacterial Enzymes Save