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Featured researches published by Bholanath Mondal.


Colloids and Surfaces B: Biointerfaces | 2016

A novel biocompatible conducting polyvinyl alcohol (PVA)-polyvinylpyrrolidone (PVP)-hydroxyapatite (HAP) composite scaffolds for probable biological application.

B. Chaudhuri; Bholanath Mondal; S.K. Ray; Samrat Sarkar

We have prepared biocompatible composites of 80wt% polyvinyl alcohol (PVA)-(20wt%) polyvinylpyrrolidone (PVP) blend with different concentrations of bioactive nanohydroxyapatite, Ca10(PO4)6(HO)2 (HAP). The composite films demonstrated maximum effective conductivity (σ∼1.64×10(-4)S/m) and effective dielectric constant (ε∼290) at percolation threshold concentration (∼10wt% HAP) at room temperature. These values of σ and ε are much higher than those of PVA, PVP or HAP. Our preliminary observation indicated excellent biocompatibility of the electrospun fibrous meshes of two of these composites with different HAP contents (8.5 and 5wt% within percolation threshold concentration) using NIH 3T3 fibroblast cell line. Cells viability on the well characterized composite fibrous scaffolds was determined by MTT [3-(4,5-di-methylthiazol-2-yl)-2,5-diphenyltetrazolium bromide] assay analysis. Enhancement of σ, due to HAP addition, was found to show increased biocompatibility of the fibrous scaffold. Enhanced σ value of the PVA/PVP-HAP composite provided supporting cues for the increased cell viability and biocompatibility of the composite fibrous meshes. Excellent biocompatibility these electrospun composite scaffolds made them to plausible potential candidates for tissue engineering or other biomedical applications.


Materials Letters | 2013

Preparation and characterization of nanocrystalline hydroxyapatite from egg shell and K2HPO4 solution

B. K. Chaudhuri; Bholanath Mondal; D.K. Modak; Krishna Pramanik; B.K. Chaudhuri


Materials Letters | 2014

Biocompatibility of electrospun graphene oxide–poly(ε-caprolactone) fibrous scaffolds with human cord blood mesenchymal stem cells derived skeletal myoblast

B. K. Chaudhuri; Debabrata Bhadra; Bholanath Mondal; Krishna Pramanik


Materials Letters | 2016

Myoblast differentiation and protein expression in electrospun graphene oxide (GO)-poly (ε-caprolactone, PCL) composite meshes

B. Chaudhuri; Bholanath Mondal; S. Kumar; Samrat Sarkar


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2013

Mechanical properties of Ti-( 49 at%) Ni shape memory alloy, part II: Effect of ageing treatment

Arijit Sinha; Bholanath Mondal; P.P. Chattopadhyay


Journal of Magnetism and Magnetic Materials | 2014

Ferromagnetic behavior of nanocrystalline Cu–Mn alloy prepared by ball milling

Bholanath Mondal; G. Sardar; Debnarayan Nath; P.P. Chattopadhyay


Journal of Magnetism and Magnetic Materials | 2013

Solubility and magnetic properties enhancement in bi-phase nanostructure Cu–Fe–Mn alloy

Bholanath Mondal; A. Basumallick; Debnarayan Nath; P.P. Chattopadhyay


Journal of Magnetism and Magnetic Materials | 2012

Influence of ternary addition of transition elements (Cr, Si and Mn) on the microstructure and magnetic properties of nano-structured CuCo alloy

Bholanath Mondal; Sumit Chabri; A. Basumallick; P.P. Chattopadhyay


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2013

Mechanical properties of Ti-(∼49 at%) Ni shape memory alloy: Part I. Effect of cold deformation

Arijit Sinha; Bholanath Mondal; P.P. Chattopadhyay


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2013

Enhanced shape recovery in cryogenically treated martensitic Ti-Ni alloys

Arijit Sinha; Bholanath Mondal; Bikas C. Maji; P.P. Chattopadhyay

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P.P. Chattopadhyay

Indian Institute of Engineering Science and Technology

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Arijit Sinha

Indian Institute of Engineering Science and Technology

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Sumit Chabri

Indian Institute of Engineering Science and Technology

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A. Basumallick

Indian Institute of Engineering Science and Technology

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Debnarayan Nath

Indian Association for the Cultivation of Science

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B.K. Chaudhuri

Indian Association for the Cultivation of Science

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Bikas C. Maji

Bhabha Atomic Research Centre

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