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Niranjan Karak

Affiliations: 
Tezpur University 
Area:
Bio-based hyperbranched polymers, Functional nanomaterials, Multifaceted advanced polymer nanocomposites, Polymeric biomaterials, Shape memory polymeric materials, Self-healing and self-cleaning polymeric materials
Website:
http://www.tezu.ernet.in/dcs/personal_profile_nk.html
Google:
"Niranjan Karak"
Bio:

Thesis: http://www.idr.iitkgp.ac.in/xmlui/handle/123456789/5944

Mean distance: (not calculated yet)
 

Parents

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Sukumar Maiti grad student 1997 IIT Kharagpur
 (Ph.D: 'Antimony Containing Polymers: Special Reference to Flame Retardant Behaviour')

Children

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Geeti Kaberi Dutta grad student 2017- Tezpur University
Tuhin Ghosh grad student 2017- Tezpur University
Dimpee Sarmah grad student 2018- Tezpur University
Nobomi Borah grad student 2019- Tezpur University
Annesha Kar grad student 2019- Tezpur University
Samiran Morang grad student 2019- Tezpur University
Nandini Dutta grad student 2001-2006 Tezpur University
Jyotishmoy Borah grad student 2002-2007 Tezpur University
Sibdas S. Mahapatra grad student 2004-2008 Tezpur University
Suvangshu Dutta grad student 2004-2009 Tezpur University
Harekrishna Deka grad student 2007-2011 Tezpur University
Uday Konwar grad student 2007-2012 Tezpur University
Gautam Das grad student 2008-2013 Tezpur University
Buddhadeb Roy grad student 2008-2013 Tezpur University
Rocktotpol Konwar grad student 2009-2013 Tezpur University
Hemjyoti Kalita grad student 2011-2014 Tezpur University
Sujata Pramanik grad student 2011-2014 Tezpur University
Shaswat Barua grad student 2011-2015 Tezpur University
Beauty Das grad student 2011-2015 Tezpur University
Bibekananda De grad student 2011-2015 Tezpur University
Suman Thakur grad student 2012-2015 Tezpur University
Satyabrat Gogoi grad student 2013-2016 Tezpur University
Rituparna Duarah grad student 2014-2019 Tezpur University
Deepshikha Hazarika grad student 2014-2019 Tezpur University
Rajarshi Bayan grad student 2015-2020 Tezpur University
Aditi Saikia grad student 2015-2020 Tezpur University
BETA: Related publications

Publications

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Bora A, Sarmah D, Rather MA, et al. (2023) Nanocomposite of starch, gelatin and itaconic acid-based biodegradable hydrogel and ZnO/cellulose nanofiber: A pH-sensitive sustained drug delivery vehicle. International Journal of Biological Macromolecules. 256: 128253
Bora A, Sarmah D, Karak N. (2023) Cellulosic wastepaper modified starch/ itaconic acid/ acrylic acid-based biodegradable hydrogel as a sustain release of NPK fertilizer vehicle for agricultural applications. International Journal of Biological Macromolecules. 253: 126555
Morang S, Bandyopadhyay A, Mandal BB, et al. (2023) Asymmetric Hard Domain-Induced Robust Resilient Biocompatible Self-Healable Waterborne Polyurethane for Biomedical Applications. Acs Applied Bio Materials. 6: 2771-2784
Sarmah D, Rather MA, Sarkar A, et al. (2023) Self-cross-linked starch/chitosan hydrogel as a biocompatible vehicle for controlled release of drug. International Journal of Biological Macromolecules. 124206
Sarmah D, Borah M, Mandal M, et al. (2023) Swelling induced mechanically tough starch-agar based hydrogel as a control release drug vehicle for wound dressing applications. Journal of Materials Chemistry. B. 11: 2927-2936
Sarmah D, Karak N. (2022) Physically cross-linked starch/hydrophobically-associated poly(acrylamide) self-healing mechanically strong hydrogel. Carbohydrate Polymers. 289: 119428
De B, Voit B, Karak N. (2021) Retraction of "Transparent Luminescent Hyperbranched Epoxy/Carbon Oxide Dot Nanocomposites with Outstanding Toughness and Ductility". Acs Applied Materials & Interfaces
Ghosh T, Karak N. (2021) Interpenetrating polymer network/functionalized‐reduced graphene oxide nanocomposite: As an advanced functional material Journal of Applied Polymer Science. 138: 50499
Sarmah D, Karak N. (2020) Double network hydrophobic starch based amphoteric hydrogel as an effective adsorbent for both cationic and anionic dyes. Carbohydrate Polymers. 242: 116320
Ghosh T, Karak N. (2020) Mechanically robust hydrophobic interpenetrating polymer network-based nanocomposite of hyperbranched polyurethane and polystyrene as an effective anticorrosive coating New Journal of Chemistry. 44: 5980-5994
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