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Dive into the research topics where Tapas Ghosh is active.

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Featured researches published by Tapas Ghosh.


RSC Advances | 2015

Electrochemical Ostwald ripening and surface diffusion in the galvanic displacement reaction: control over particle growth

Tapas Ghosh; P. Karmakar; Biswarup Satpati

We report the role of electrochemical Ostwald ripening and the galvanic displacement reaction in uniform particle formation on ion bombarded amorphous (i.e., composed of random atomic spacings) Ge (a-Ge) surfaces compared to crystalline germanium (c-Ge). Silver growth on c-Ge and a-Ge substrates by electroless deposition has been studied by atomic force microscopy (AFM), cross-sectional transmission electron microscopy (XTEM), and energy dispersive X-ray spectroscopy (EDX). Introduction of defects can provide a control over particle growth by the galvanic displacement reaction that may offer continuous film growth up to a definite thickness. The possibility of surface diffusion and its consequences have also been discussed.


Journal of Photochemistry and Photobiology B-biology | 2018

Mesoporous silica for drug delivery: Interactions with model fluorescent lipid vesicles and live cells

Munmun Bardhan; Anupa Majumdar; Sayantan Jana; Tapas Ghosh; Uttam Pal; Snehasikta Swarnakar; Dulal Senapati

Formulated mesoporous silica nanoparticle (MSN) systems offer the best possible drug delivery system through the release of drug molecules from the accessible pores. In the present investigation, steady state and time resolved fluorescence techniques along with the fluorescence imaging were applied to investigate the interactions of dye loaded MSN with fluorescent unilamellar vesicles and live cells. Here 1,2-dimyristoyl-sn-glycero-3-phospocholine (DMPC) was used to prepare Small Unilamellar Vesicles (SUVs) as the model membrane with fluorescent 1,6-diphenyl-1,3,5-hexatriene (DPH) molecule incorporated inside the lipid bilayer. The interaction of DPH incorporated DMPC membrane with Fluorescein loaded MSN lead to the release of Fluorescein (Fl) dye from the interior pores of MSN systems. The extent of release of Fl and spatial distribution of the DPH molecule has been explored by monitoring steady-state fluorescence intensity and fluorescence lifetime at physiological condition. To investigate the fate of drug molecule released from MSN, fluorescence anisotropy has been used. The drug delivery efficiency of the MSN as a carrier for doxorubicin (DOX), a fluorescent chemotherapeutic drug, has also been investigated at physiological conditions. The study gives a definite confirmation for high uptake and steady release of DOX in primary oral mucosal non-keratinized squamous cells in comparison to naked DOX treatment.


Journal of Microscopy | 2015

Study of inelastic mean free path of metal nanostructures using energy filtered transmission electron microscopy imaging.

Tapas Ghosh; Munmun Bardhan; Maireyee Bhattacharya; Biswarup Satpati

We report a simple method for measuring the inelastic mean free path of nanostructures of known geometry using energy filtered transmission electron microscopy imaging. The mean free path of inelastic electrons was measured by using systems having known symmetry, such as cylindrical or cubic, combined with Poisson statistics without employing the knowledge of microscope parameters, namely the convergence angle and the collection angle. Having inherent symmetry of such systems, their absolute thickness can be measured from their two‐dimensional projection images. We have calculated mean free path of inelastic scattering of electrons in gold, silver and nickel doing case study research by employing gold nanorod, silver nanocube and nickel nanorod lying on a carbon‐coated TEM grid at two different electron energies (viz. 200 and 300 keV) following this alternative approach. Results obtained using such alternative approach were verified using microscope parameters.


Beilstein Journal of Nanotechnology | 2017

Role of oxygen in wetting of copper nanoparticles on silicon surfaces at elevated temperature

Tapas Ghosh; Biswarup Satpati

Copper nanoparticles have been deposited on silicon surfaces by a simple galvanic displacement reaction, and rapid thermal annealing has been performed under various atmospheric conditions. In spite of the general tendency of the agglomeration of nanoparticles to lower the surface energy at elevated temperatures, our plan-view and cross-sectional transmission electron microscopy (TEM), energy dispersive X-ray spectroscopy (EDX) and X-ray diffraction (XRD) analysis shows that the thermal oxidation of the copper nanoparticles and formation of cupric oxide (CuO) on silicon surfaces leads to wetting rather than agglomeration. In contrast, agglomeration has been observed when copper nanoparticles were annealed in a nitrogen environment. The lattice transformation from cubic Cu to monoclinic CuO, and hence the change in surface energy of the particles, assists the wetting process. The occurrence of wetting during the oxidation step implies a strong interaction between the oxidized film and the silicon surface.


SOLID STATE PHYSICS: Proceedings of the 56th DAE Solid State Physics Symposium 2011 | 2012

Template Synthesis and Characterizations of Nickel Nanorods

Tapas Ghosh; Biswarup Satpati

Template assisted Ni nanorods were grown using electro-deposition process and investigated using an Analytical Transmission Electron Microscope. Transmission Electron Microscopy (TEM) images and diffraction patterns reveal the polycrystalline nature of grown Ni nanorods and the composition of these nanorods were verified using energy dispersive X-ray (EDX) spectroscopy. The morphology of the grown nanorods was also characterized using Scanning Electron Microscope (SEM).


Scientific Reports | 2018

Decoupled in-plane Dipole Resonance Modulated Colorimetric Assay-Based Optical Ruler for Ultra-Trace Gold (Au) Detection

Ajoy Mandal; Maireyee Bhattacharya; Denis Kuznetsov; Tapas Ghosh; Sudeshna Das Chakraborty; Biswarup Satpati; Vsevolod N. Mazov; Dulal Senapati

Decoupling of different plasmon resonance modes (in-plane, and out-of-plane dipole and quadrupole resonances) by tuning nanoparticle’s size and shape offers a new field of plasmonics as colorimetric assay-based optical-ruler for ultra-trace sensing. Driven by its low cost, easy to perform and efficient way to measure trace level (up to 30 ppt in presence of common mining elements in natural gold ore) abundance, this study develops a highly selective and ultrasensitive turn-on colorimetric sensor to detect gold-ion from environmental samples. Different level of gold-ion tracer makes size variable spherical- and disc-shaped silver nanoparticles when added to a ‘growth solution’ which results decoupling of in-plane dipole resonance from in-plane quadrupole and out-of-plane dipole resonances with a wide range of in-plane dipole plasmon tunability to generate different colors. This color-coded sensing of gold-ion shows high selectivity and ultrasensitivity over other metal ions in the ppt level with an impurity aberration limit of 1 ppm. A plausible explanation explains the possible role of catalytic gold-ion to initiate unfavorable silver ion (Ag+) reduction by ascorbic acid to generate silver nanoparticles. Proposed technology has been applied in real mining sample (Bugunda Gold Deposit, Tajikistan) to detect gold concentration from ores to find potential application in mining technology.


DAE SOLID STATE PHYSICS SYMPOSIUM 2016 | 2017

Galvanic displacement reaction and rapid thermal annealing in size/shape controlling silver nanoparticles on silicon substrate

Tapas Ghosh; Biswarup Satpati

The effect of the thermal annealing on silver nanoparticles deposited on silicon surface has been studied. The silver nanoparticles have been deposited by the galvanic displacement reaction. Rapid thermal annealing (RTA) has been performed on the Si substrate, containing the silver nanoparticles. The scanning transmission electron microscopy (STEM), energy dispersive X-ray (EDX) spectroscopy and scanning electron microscopy (SEM) study show that the galvanic displacement reaction and subsequent rapid thermal annealing could lead to well separated and spherical shaped larger silver nanoparticles on silicon substrate.


SOLID STATE PHYSICS: Proceedings of the 59th DAE Solid State Physics Symposium#N#2014 | 2015

Substrate decomposition in galvanic displacement reaction: Contrast between gold and silver nanoparticle formation

Tapas Ghosh; D. Kabiraj; Biswarup Satpati

We have investigated substrate decomposition during formation of silver and gold nanoparticles in galvanic displacement reaction on germanium surfaces. Silver and gold nanoparticles were synthesized by electroless deposition on sputter coated germanium thin film (∼ 200 nm) grown initially on silicon substrate. The naoparticles formation and the substrate corrosion were studied using scanning transmission electron microscopy (STEM) and the energy dispersive X-ray (EDX) spectroscopy.


SOLID STATE PHYSICS: Proceedings of the 59th DAE Solid State Physics Symposium#N#2014 | 2015

Tomography and optical properties of silver nano-inukshuk

Tanmay Ghosh; Pabitra Das; Tapas Ghosh; Biswarup Satpati

Following a simple dip-and-rinse galvanic displacement reaction silver nano-inukshuks were prepared directly on germanium surfaces. Morphology, 3-dimensional (3D) structure, chemical composition and optical properties of the silver nanostructurs were investigated using scanning electron microscopy (SEM), scanning transmission electron microscopy (STEM), energy-dispersive X-ray spectroscopy (EDX), and cathodoluminescence (CL) spectroscopy. Exact 3D morphology was reconstructed in the by tomography mode of TEM.


Applied Surface Science | 2017

Atom beam sputtered Ag-TiO2 plasmonic nanocomposite thin films for photocatalytic applications

Jaspal Singh; Kavita Sahu; Akhilesh Pandey; Mohit Kumar; Tapas Ghosh; Biswarup Satpati; T. Som; Sreekanth J. Varma; D.K. Avasthi; Satyabrata Mohapatra

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Biswarup Satpati

Saha Institute of Nuclear Physics

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Maireyee Bhattacharya

Saha Institute of Nuclear Physics

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Munmun Bardhan

Saha Institute of Nuclear Physics

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Pabitra Das

Saha Institute of Nuclear Physics

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Tanmay Ghosh

Saha Institute of Nuclear Physics

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Dulal Senapati

Jackson State University

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Ajoy Mandal

Saha Institute of Nuclear Physics

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Akhilesh Pandey

Solid State Physics Laboratory

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Anupa Majumdar

Saha Institute of Nuclear Physics

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