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Srijan Sengupta

Researcher at Indian Institute of Technology Kharagpur

Publications -  20
Citations -  384

Srijan Sengupta is an academic researcher from Indian Institute of Technology Kharagpur. The author has contributed to research in topics: Coating & Copper. The author has an hindex of 11, co-authored 19 publications receiving 297 citations. Previous affiliations of Srijan Sengupta include Madanapalle Institute of Technology and Science.

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Synthesis of calcium hydrogen phosphate and hydroxyapatite coating on SS316 substrate through pulsed electrodeposition.

TL;DR: This work involves the pulsed electro-deposition coating of biocompatible hydroxyapatite and its group compounds from a diluted bath of calcium and phosphate salt at various current densities over the biomaterial sheet of SS316 to serve as a medium for faster tissue growth over the metallic implants.
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Novel bilayer ZnNi/NiCoSiC nanocomposite coating with exceptional corrosion and wear properties by pulse electrodeposition

TL;DR: In this article, a novel bilayered Zn Ni-Co-SiC nanocomposite bilayer coating on mild steel by electrodeposition was developed, which achieved a hardness of 734 HV and a corrosion current density of 28μA/cm2 in 3.5 mM NaCl.
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3D microporous Sn-Sb-Ni alloy impregnated Ni foam as high-performance negative electrode for lithium-ion batteries

TL;DR: In this article, a Tin-Antimony-Nickel alloy with dendritic morphology electrodeposited on 3D interconnected microporous Nickel foam (∼8μm pore diameter) was reported as a potential high capacity anode for Li-ion batteries.
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Comparison of Osteoconduction, cytocompatibility and corrosion protection performance of hydroxyapatite-calcium hydrogen phosphate composite coating synthesized in-situ through pulsed electro-deposition with varying amount of phase and crystallinity

TL;DR: In this article, a composite coating of hydroxyapatite and calcium hydrogen phosphate was synthesized over 316 l grade of stainless steel through pulsed electro deposition, and a detailed electrochemical behavior study was carried out to assess the corrosion behavior under contact with body fluid.
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Synergistic effect of peak current density and nature of surfactant on microstructure, mechanical and electrochemical properties of pulsed electrodeposited Ni-Co-SiC nanocomposites

TL;DR: In this paper, Ni-Co-nano SiC composite coatings were electrodeposited from a modified Watt's bath containing CTAB or SDS by pulse electrodeposition at four different peak current densities.