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Dive into the research topics where Sukanta De is active.

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Featured researches published by Sukanta De.


Nanotechnology | 2004

Characterization and dielectric properties of polyaniline–TiO2 nanocomposites

Ashis Dey; Sukanta De; Amitabha De; S.K. De

Nanocomposites of polyaniline (PANI)–titanium dioxide (PANI–TiO2) are prepared from a colloidal sol of TiO2 nanoparticles. The dc and ac conductivities of samples with different concentrations of PANI have been investigated as a function of frequency and temperature. The dc conductivity follows three-dimensional variable range hopping. The ac conductivity has been interpreted as a power law of frequency. The temperature variation of the frequency exponent suggests a correlated barrier hopping conduction process in the nanocomposites. A very large dielectric constant of about 3700 at room temperature has been observed. An electric modulus presentation is used to interpret the dielectric spectra. The interface between polyaniline and TiO2 plays an important role in yielding a large dielectric constant in the nanocomposite.


DAE SOLID STATE PHYSICS SYMPOSIUM 2016 | 2017

Few layered MoO3 nano sheets-SWCNT composite thin film as supercapacitor electrode

Shibsankar Dutta; Jasim Akther; Sukanta De

The increasing demands for clean and renewable energy, the advantages of high power density, long lasting and high efficiency have made Supercapacitor as one of the major emerging energy storage device.The 2D layered metal oxide nanocomposite with SWCNT is the promising candidate for energy storage and conversion. In this work we exfoliate the crystalline bulk MoO3 by simple liquid phase exfoliation to give multi-layer MoO3 dispersed in a suitable solvent. As the electrical conductivity of MoO3 is very low so, the dispersion was used to make hybrid material with SWCNT dispersion by vacuum filtration. The SWCNT-MoO3 composite showed an areal capacitance value of 1290 µF/cm2 at 10 mV/s in PVA-H2 SO4 solid gel electrolyte. This composite based electrode provides an energy density of 0.092 µWh/cm2 and a power density of 9.54 µW/cm2 at 0.01 mA/cm2The increasing demands for clean and renewable energy, the advantages of high power density, long lasting and high efficiency have made Supercapacitor as one of the major emerging energy storage device.The 2D layered metal oxide nanocomposite with SWCNT is the promising candidate for energy storage and conversion. In this work we exfoliate the crystalline bulk MoO3 by simple liquid phase exfoliation to give multi-layer MoO3 dispersed in a suitable solvent. As the electrical conductivity of MoO3 is very low so, the dispersion was used to make hybrid material with SWCNT dispersion by vacuum filtration. The SWCNT-MoO3 composite showed an areal capacitance value of 1290 µF/cm2 at 10 mV/s in PVA-H2 SO4 solid gel electrolyte. This composite based electrode provides an energy density of 0.092 µWh/cm2 and a power density of 9.54 µW/cm2 at 0.01 mA/cm2


Archive | 2018

One-dimensional α-MoO3 nanorods for high energy density pseudocapacitor

Shibsankar Dutta; Shreyasi Pal; Sukanta De

Ultralong α-MoO3 nanorods having length of 500 nm to 1 µm and uniform width of around ∼50 nm have been synthesized by a simple one step hydrothermal route using a molybdenum organic salt precursor. An evaluation of the electrochemical properties of the nanorods was done by cyclic voltammetry (CV), and galvanometric charging– discharging (GCD) test. Because of the high active sites and rapid ion diffusion and electron transport of the electrodes using as prepared nanorods reveals energy density of 65 Wh/kg at a power density of 940 W/ kg and a maximum specific capacitance of 474 F/g. It also shows excellent cycling stability.Ultralong α-MoO3 nanorods having length of 500 nm to 1 µm and uniform width of around ∼50 nm have been synthesized by a simple one step hydrothermal route using a molybdenum organic salt precursor. An evaluation of the electrochemical properties of the nanorods was done by cyclic voltammetry (CV), and galvanometric charging– discharging (GCD) test. Because of the high active sites and rapid ion diffusion and electron transport of the electrodes using as prepared nanorods reveals energy density of 65 Wh/kg at a power density of 940 W/ kg and a maximum specific capacitance of 474 F/g. It also shows excellent cycling stability.


AIP Conference Proceedings | 2018

Synthesis of MoS2/rGO nanosheets hybrid materials for enhanced visible light assisted photocatalytic activity

Shreyasi Pal; Shibsankar Dutta; Sukanta De

A facile hydrothermal method has been adopted to synthesize pure MoS2 nanosheets and MoS2/rGO nanosheets hybrid. The samples were characterized using field emission scanning electron microscopy (FESEM), transmission electron microscopy (HRTEM), X-ray diffraction spectroscopy (XRD), Brunauer-Emmett-Teller (BET). The photocatalytic performance and reusability of MoS2 nanosheets and MoS2/rGO hybrids was evaluated by discoloring of RhB under visible light irradiation. Results indicated that MoS2/rGO photocatalysts with large surface area of 69.5 m2 g−1 could completely degrade 50 mL of 8 mg L−1 RhB aqueous solution in 90 min with excellent recycling and structural stability as compared with pure MoS2 nanosheets (53%). Such enhanced performance could be explained due to the high surface area, enhanced light absorption and the increased dye adsorptivity and reduced electron–hole pair recombination with the presence of rGO.


INTERNATIONAL CONFERENCE ON CONDENSED MATTER AND APPLIED PHYSICS (ICC 2015): Proceeding of International Conference on Condensed Matter and Applied Physics | 2016

Few layered vanadyl phosphate nano sheets-MWCNT hybrid as an electrode material for supercapacitor application

Shibsankar Dutta; Sukanta De

It have been already seen that 2-dimensional nano materials are the suitable choice for the supercapacitor application due to their large specific surface area, electrochemical active sites, micromechanical flexibility, expedite ion migration channel properties. Free standing hybrid films of functionalized MWCNT (– COOH group) and α-Vanadyl phosphates (VOPO42H2O) are prepared by vacuum filtering. The surface morphology and microstructure of the samples are studied by transmission electron microscope, field emission scanning electron microscope, XRD, Electrochemical properties of hybrid films have been investigated systematically in 1M Na2SO4 aqueous electrolyte. The hybrid material exhibits a high specific capacitance 236 F/g with high energy density of 65.6 Wh/Kg and a power density of 1476 W/Kg.


Materials Chemistry and Physics | 2005

Transport and dielectric properties of α-zirconium phosphate-polyaniline composite

Sukanta De; Amitabha De; Ajay Das; S. K. De


Journal of Nanoscience and Nanotechnology | 2006

Giant dielectric constant in titania nanoparticles embedded in conducting polymer matrix.

Ashis Dey; Sukanta De; Amitabha De; S. K. De


Solid State Communications | 2006

Characterization and transport properties of intercalated polypyrrole¿vanadium pentoxide xerogel nanocomposite

Sukanta De; Ashis Dey; S. K. De


European Physical Journal B | 2005

Charge transport mechanism of vanadium pentoxide xerogel-polyaniline nanocomposite

Sukanta De; Ashis Dey; S.K. De


Journal of Applied Polymer Science | 2007

Conductivity relaxation in zirconia nanoparticles dispersed in conducting polymer

Ashis Dey; Sukanta De

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Ashis Dey

Indian Association for the Cultivation of Science

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Amitabha De

Saha Institute of Nuclear Physics

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S. K. De

Indian Association for the Cultivation of Science

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S.K. De

Indian Association for the Cultivation of Science

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Ajay Das

Saha Institute of Nuclear Physics

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Ankan Dutta Chowdhury

Saha Institute of Nuclear Physics

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Nidhi Agnihotri

Saha Institute of Nuclear Physics

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