Amitava Bhattacharyya
Amitava Bhattacharyya
Chief Scientist, Medical Electronics Research Center, Seoul National Univ. of Sci. and Tech.
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Characterization techniques for nanotechnology applications in textiles
M Joshi, A Bhattacharyya, SW Ali
CSIR, 2008
Nanotechnology–a new route to high-performance functional textiles
M Joshi, A Bhattacharyya
Textile Progress 43 (3), 155-233, 2011
Peripheral Nerve Conduit: Materials and Structures
S Houshyar, A Bhattacharyya, R Shanks
ACS Chemical Neuroscience, 2019
Graphene reinforced ultra high molecular weight polyethylene with improved tensile strength and creep resistance properties.
A Bhattacharyya, S Chen, M Zhu
Express Polymer Letters 8 (2), 2014
Solar stills for desalination of water in rural households
A Bhattacharyya
International Journal of Environment and Sustainability 2 (1), 2013
Development of smart clothing for military applications using thermochromic colorants
KR Karpagam, KS Saranya, J Gopinathan, A Bhattacharyya
The Journal of The Textile Institute 108 (7), 1122-1127, 2017
Nanostructured coatings for super hydrophobic textiles
M Joshi, A Bhattacharyya, N Agarwal, S Parmar
Bulletin of Materials Science 35 (6), 933-938, 2012
Nano-biomaterials for designing functional bioinks towards complex tissue and organ regeneration in 3D bioprinting  
A Bhattacharyya, J Gopinathan, I Noh
Additive Manufacturing, 2021
7 Carbon Footprint of Textile
S Rana, S Pichandi, S Karunamoorthy, A Bhattacharyya, S Parveen, ...
Handbook of sustainable apparel production, 141, 2015
Bioink homogeneity control during 3D bioprinting of multicomponent micro/nanocomposite hydrogel for even tissue regeneration using novel twin screw extrusion system
A Bhattacharyya, G Janarthanan, HN Tran, HJ Ham, JH Yoon, I Noh
Chemical Engineering Journal, 2021
Human Knee Meniscus Regeneration Strategies: a Review on Recent Advances
MM Pillai, J Gopinathan, R Selvakumar, A Bhattacharyya
Current Osteoporosis Reports, 2018
Impact of silk fibroin-based scaffold structures on human osteoblast MG63 cell attachment and proliferation
A Varkey, E Venugopal, P Sugumaran, G Janarthanan, MM Pillai, ...
International Journal of Nanomedicine 10 (sup2), 43-51, 2015
Tissue engineering of human knee meniscus using functionalized and reinforced silk‐polyvinyl alcohol composite three‐dimensional scaffolds: Understanding the in vitro and in …
MM Pillai, J Gopinathan, R Senthil Kumar, G Sathish Kumar, ...
Journal of Biomedical Materials Research Part A, 2018
Electrospun PCL nanofibers blended with Wattakaka volubilis active phytochemicals for bone and cartilage tissue engineering
E Venugopal, KS Sahanand, A Bhattacharyya, S Rajendran
Nanomedicine: Nanotechnology, Biology, and Medicine, 2019
Nanodiamond/poly-ε-caprolactone nanofibrous scaffold for wound management
S Houshyar, GS Kumar, A Rifa, N Tran, R Nayak, RA Shanks, R Padhye, ...
Materials Science and Engineering: C, 2019
Biomolecule incorporated poly-ε-caprolactone nanofibrous scaffolds for enhanced human meniscal cell attachment and proliferation
J Gopinathan, S Mano, V Elakkiya, MM Pillai, KS Sahanand, BKD Rai, ...
RSC advances 5 (90), 73552-73561, 2015
Polypropylene-Nanodiamond Composite for Hernia Mesh
S Houshyar, A Sarker, A Jadhav, GS Kumar, A Bhattacharyya, R Nayak, ...
Materials Science and Engineering: C, 2020
Silk–PVA hybrid nanofibrous scaffolds for enhanced primary human meniscal cell proliferation
MM Pillai, J Gopinathan, B Indumathi, YR Manjoosha, ...
The Journal of membrane biology 249, 813-822, 2016
Egg shell membrane–a potential natural scaffold for human meniscal tissue engineering: an in vitro study
MM Pillai, TR Akshaya, V Elakkiya, J Gopinathan, KS Sahanand, BKD Rai, ...
RSC Advances 5 (93), 76019-76025, 2015
Preparation, characterisation, and in vitro evaluation of electrically conducting poly(ɛ‐caprolactone)‐based nanocomposite scaffolds using PC12 cells
J Gopinathan, AF Quigley, A Bhattacharyya, R Padhye, RMI Kapsa, ...
Journal of Biomedical Materials Research Part A 104 (4), 853-865, 2016
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