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P Chakraborty, N Deka, D C Patra, K Debnath, S P Mondal, “Hydrothermally Grown Porous Cobalt Oxide Nanostructures for Enzyme-Less Glucose Detection”, Journal of Electronic Materials, 50 (6), 3699-3705 |
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2021 |
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P. Chakraborty, N. Deka, D. C. Patra, K. Debnath, S. P. Mondal, “Salivary glucose sensing using highly sensitive and selective non-enzymatic porous NiO nanostructured electrodes”, Surfaces and Interfaces, 26, 101324 |
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2021 |
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N Deka, P Chakraborty, DC Patra, S Dhar, S P Mondal, “Study of self-powered and broadband photosensing properties of CdS/PbS-decorated TiO2 nanorods/reduced graphene oxide junction”, Bulletin of Materials Science, 118, 105165 |
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2021 |
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K Debnath, T Majumder, S P Mondal, “Photoelectrochemical and photosensing study of nitrogen doped carbon nanoparticles sensitized TiO2 nanorods” Diamond & Related Materials, 120, 108683 |
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2021 |
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P Chakraborty, S Dhar, N Deka, K Debnath, S.P. Mondal, “Non-enzymatic salivary glucose detection using porous CuO nanostructures” Sensors and Actuators B: Chemical, 302, p.127134 |
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2020 |
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A. Purkayastha, S. Dhar, S. P. Mondal, A. Franconetti, A. Frontera, R. Ganguly, A. M Kirillov, T. K. Misra, “Metal–organic architectures driven by a multifunctional 6-aminouracil spacer: structures, noncovalent interactions, and conductivity” CrystEngComm 22 (4), 829-840 |
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2020 |
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S Dhar, P Chakraborty, N Deka, S.P. Mondal, “Broadband photosensing using p-type cupric oxide nanorods/conducting polymer Schottky junction” Chemical Physics, 529, 110578 |
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2020 |
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N Deka, P Chakraborty, DC Patra, S Dhar, S P Mondal, “Self-powered broadband photodetection using PbS decorated ZnO nanorods/reduced graphene oxide junction”, Materials Science in Semiconductor Processing, 118, 105165 |
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2020 |
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P. Chakraborty, S. Dhar, K. Debnath, S. P. Mondal, "Glucose and hydrogen peroxide dual-mode electrochemical sensing using hydrothermally grown CuO nanorods", Journal of Electroanalytical Chemistry. 833, 213-220 |
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2019 |
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P. Chakraborty, S. Dhar, K. Debnath, T. Majumder and S. P. Mondal, "Non-enzymatic and non-invasive glucose detection using Au nanoparticle decorated CuO nanorods", Sensors and Actuators B, 15, 776-785 |
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2019 |
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T. Majumder and S. P. Mondal, “Graphene quantum dots as a green photosensitizer with carbon-doped ZnO nanorods for quantum-dot-sensitized solar cell applications”, Bulletin of Materials Science, 42, p.65 |
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2019 |
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T. Majumder, S. Dhar, P. Chakraborty, K. Debnath, S. P. Mondal, “S, N co-doped Graphene Quantum Dots Decorated C doped ZnO Nanotaper Photoanodes for Solar Cells Application”, NANO: Brief Reports and Reviews, 14(2), 1950012 |
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2019 |
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S. Dhar, P. Chakraborty, T. Majumder, and S. P. Mondal"Acid Treated PEDOT:PSS Polymer and TiO2 Nanorods Schottky Junction Ultraviolet Photodetectors with Ultrahigh External Quantum Efficiency, Detectivity and Responsivity", ACS Appl. Mater. Interfaces, 2018, 10 (48), pp 41618–41626 |
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2018 |
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S. Dhar, T. Majumder, P. Chakraborty, S. P. Mondal, “DMSO modified PEDOT: PSS polymer/ZnO nanorods Schottky junction ultraviolet photodetector: Photoresponse, external quantum efficiency, detectivity, and responsivity augmentation using N doped graphene quantum dots”, Organic Electronics 53, pp.101-110 |
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2018 |
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T. Majumder, S. Dhar, P. Chakraborty, K. Debnath, S. P. Mondal, “Advantages of ZnO nanotaper photoanodes in photoelectrochemical cells and graphene quantum dot sensitized solar cell applications”, Journal of Electroanalytical Chemistry,813,pp. 92-101 |
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2018 |
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T. Majumder, S. Dhar, P. Chakraborty, S. P. Mondal, “Growth of Carbon-Functionalized, Carbon-Doped ZnO/C Core-Shell Nanorods for Photoelectrochemical Solar Energy Conversion”, Chemistry Select 3, pp. 4082-4094. |
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2018 |
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S. Dhar, P. Chakraborty, T. Majumder, S. P. Mondal, “CdS Decorated Al Doped ZnO Nanorod/Polymer Schottky Junction Ultraviolet-Visible Dual Wavelength Photodetector”, ACS Applied Nano Materials 1, pp. 3339-3345. |
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2018 |
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P. Chakraborty, T. Majumder, S. Dhar and S. P. Mondal, “Non-enzymatic glucose sensing using hydrothermally grown ZnO nanorods: Sensitivity augmentation by carbon doping and carbon functionalization” Materials Research Express, 5, 095011 |
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2018 |
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T. Majumder, J. J. L. Hmar, S. Dhar, S. P. Mondal, “Superior photoelectrochemical properties of ZnO nanorods/poly (3-hexylthiophene) hybrid photoanodes”, Chemical Physics, 490, pp. 1–6 |
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2017 |
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T. Majumder, S. Dhar, K. Debnath, S. P. Mondal, “Role of S, N co-doped Graphene Quantum Dots as a Green Photosensitizer with Ag-doped ZnO Nanorods for Improved Electrochemical Solar Energy Conversion”, Materials Research Bulletin, 93, pp. 214–222 |
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2017 |
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S. Dhar, T. Majumder, S. P. Mondal, “Phenomenal improvement of external quantum efficiency, detectivity and responsivity of nitrogen doped graphene quantum dot decorated zinc oxide nanorod/polymer schottky junction UV detector” Materials Research Bulletin, 95 , pp. 198–203 |
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2017 |
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S. Dhar, T. Majumder, S. P. Mondal, “Phenomenal improvement of external quantum efficiency, detectivity and responsivity of nitrogen doped graphene quantum dot decorated zinc oxide nanorod/polymer schottky junction UV detector” Materials Research Bulletin, 95 , pp. 198–203 |
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2017 |
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J. J. L Hmar, T. Majumder, S. Dhar and S. P. Mondal, “Sulfur and Nitrogen Co-doped graphene quantum dot decorated ZnO nanorod/polymer hybrid flexible device for photosensing applications”, Thin Solid Films, 612, pp.274-283 |
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2016 |
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T. Majumder, J. J. L. Hmar, J. N. Roy and S. P. Mondal, “Spectral Dependent Photoelectrochemical Behaviors of CdS Sensitized ZnO Nanorods”, Journal of Nanoscience and Nanotechnology, 16 (4), pp.4065-4070 |
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2016 |
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JJL Hmar, T Majumder and S. P. Mondal, “Growth and characteristics of PbS/polyvinyl alcohol nanocomposites for flexible high dielectric thin film applications, Thin Solid Films 598, pp.243-251 |
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2016 |
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S. Bera, A. K Katiyar, A. K. Sinha, S. P Mondal, S. K. Ray, “Resistive switching characteristics of a single Zn-doped CuS nanoball anchored with multi-walled carbon nanotubes” Materials & Design, 101, pp.197-203 |
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2016 |
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T. Majumder and S. P. Mondal, “Advantages of nitrogen-doped graphene quantum dots as a green sensitizer with ZnO nanorod based photoanodes for solar energy conversion”, Journal of Electroanalytical Chemistry, 769, pp.48-52 |
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2016 |
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T Majumder, K Debnath, S Dhar, JJL Hmar and S. P. Mondal, “Nitrogen-Doped Graphene Quantum Dot-Decorated ZnO Nanorods for Improved Electrochemical Solar Energy Conversion”, Energy Technology, 4, pp. 950-958 |
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2016 |
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S. Dhar, T. Majumder and S. P. Mondal “Graphene Quantum Dot Sensitized ZnO Nanord/Polymer Schottky Junction UV Detector with Superior External Quantum Efficiency, Detectivity and Responsivity” ACS Applied Materials & Interfaces, 8 (46), pp 31822–31831 |
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2016 |
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JJL Hmar, T Majumder, JN Roy and S. P. Mondal, “Electrical and photoelectrochemical characteristics of flexible CdS nanocomposite/conducting polymer heterojunction” Materials Science in Semiconductor Processing 40, pp.145-151 |
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2015 |
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JJL Hmar, T Majumder, JN Roy and S. P. Mondal, “Flexible, transparent, high dielectric and photoconductive thin films using ZnO nanosheets-multi-walled carbon nanotube-polymer nanocomposites” Journal of Alloys and Compounds 651, pp.82-90 |
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2015 |
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S. Bera, S. P. Mondal, D. Naskar, S. C. Kundu, S. K. Ray, “Flexible and transparent nanocrystal floating gate memory devices using silk protein”, Organic Electronics, Vol. 15, pp. 1767–1772 |
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2014 |
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S. Roy, A. K. Katiyar, S. P. Mondal, S. K. Ray, K. Biradha, “Multifunctional White-Light-Emitting Metal–Organic Gels with a Sensing Ability of Nitrobenzene”, ACS Applied Materials & Interfaces 6 (14), pp. 11493-11501 |
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2014 |
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T. Majumder, J.J.L. Hmar, K. Debnath, N. Gogurla, J. N. Roy, S. K. Ray and S. P. Mondal, “Photoelectrochemical and photosensing behaviors of hydrothermally grown ZnO nanorods”, Journal of Applied Physics, 116, 034311 |
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2014 |
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S. Bera, S. P. Mondal and S. K. Ray, “Optical properties of CdSe nanoparticles embedded in polyvinyl alcohol matrix”, Journal of Nanoscience and Nanotechnology, Vol 13, pp.300-305 |
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2013 |
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N. Gogurla, S. P. Mondal, A. K. Sinha, A. K. Katiyar,W. Banerjee, S. C Kundu and S. K Ray, “Transparent and flexible resistive switching memory devices with very high ON/OFF ratio using gold nanoparticles embedded in silk protein matrix”, Nanotechnology,Vol 24, p.345202 |
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2013 |
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S. P. Mondal and S. K. Ray, “Cadmium Sulfide Based Nanostructures for Photovoltaic devices”, Proc. Natl. Acad. Sci. Sect. A Phys. Sci., Vol. 82(1), pp. 21-29 |
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2012 |
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S. Manna, S. Das, S. P. Mondal, R. Singha and S. K. Ray, “High efficiency Si/CdS radial nanowire heterojunction photodetectors using etched Si nanowire templates”, J. Physical Chemistry C, Vol. 116, pp. 7126-7133 |
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2012 |
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S. Roy, S. P. Mondal, S. K. Ray, and K. Biradha, “A Photoswitchable and Photoluminescent Organic Semiconductor Based On Cation–p and Carboxylate–Pyridinium Interactions: A Supramolecular Approach”, Angew. Chem. Int. Ed., Vol. 51, pp. 12012-12015 |
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2012 |
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T. Rakshit, S. P. Mondal, I. Manna and S. K. Ray, “CdS-Decorated ZnO Nanorod Heterostructures for Improved Hybrid Photovoltaic Devices” ACS Appl. Mater. Interfaces, 4 (11), pp. 6085-6095 |
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2012 |
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S. P. Mondal, S. Bera, G. Narender, and S. K. Ray, CdSe quantum dots-poly(3-hexylthiophene) nanocomposite sensors for selective chloroform vapor detection at room temperature”, Appl. Phys. Lett.,Vol. 101, p. 173108 |
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2012 |
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W. Hunter, J. C. Xu, A. M. Biaggi-Labiosa, D. Laskowski, P. K. Dutta, S. P. Mondal, B. J. Ward, D. B. Makel, C.C. Liu, C. W. Chang, and R. A. Dweik, “Smart Sensor Systems for Human Health Breath Monitoring Applications”, Journal of Breath Research, Vol. 5, pp. 037111 (11pp) |
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2011 |
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S. P. Mondal, P. K. Dutta, R. A. Dweik, D. Laskowski, G. W. Hunter, B. J. Ward, “Development of High Sensitivity Potentiometric NOx Sensor and its Application to Breath Analysis”, Sensors and Actuators B: Chemical, Vol. 158, pp. 292- 298 |
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2011 |
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S. P. Mondal, S. K. Ray, J. Ravichandran and I. Manna, “Temperature dependent growth and optical properties of SnO2 nanowires and nanobelts”, Bulletin of Materials Science, Vol. 33, No 4, pp. 1-8 |
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2010 |
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S. P. Mondal, A. Dhar, S. K. Ray and A. K. Chakraborty, “Bonding, vibrational and electrical characteristics of CdS nanostructures embedded in polyvinyl alcohol matrix”, Journal of Applied Physics, Vol. 105, pp. 084309-5 |
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2009 |
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S. P. Mondal, R. Aluguri and S. K. Ray, “Dielectric and transport properties of carbon nanotube-CdS nanostructures embedded in polyvinyl alcohol matrix”, Journal of Applied Physics, Vol. 105, pp. 114317-7 |
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2009 |
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S. P. Mondal and S. K. Ray, “Enhanced broadband photoresponse of Ge/CdS nanowire radial heterostructures”, Applied Physics Letters, Vol. 94, p. 223119 |
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2009 |
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S. K. Ray and S. P. Mondal, “Synthesis of CdS Nanowires Using Nanoporous Alumina Template”, International Journal of Nanomanufacturing, Vol. 2, pp. 583-597 |
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2008 |
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S. P. Mondal, V.S. Reddy, S. Das, A. Dhar and S. K. Ray, “Memory effect in a junction-like CdS nanocomposites/conducting polymer poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylene-vinylene] heterostructure, Nanotechnology, Vol. 19, pp. 215306 (4pp.) |
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2008 |
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S. P. Mondal, A. Dhar and S. K. Ray, “Optical properties of CdS nanowires prepared by dc electrochemical deposition in porous alumina template”, Materials Science in Semiconductor Processing, Vol. 10, pp. 185-193 |
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2007 |
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S. P. Mondal, K. Das, A. Dhar and S. K. Ray, “Characteristics of CdS nanowires grown in porous alumina template using a two- cell method”, Nanotechnology, Vol. 80, pp. 95606 (6pp) |
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2007 |
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S. P. Mondal, H. Mullick, T. Lavanya, A. Dhar, S.K.Lahiri and S. K. Ray, “Optical and dielectric properties of junction- like CdS nano-composites embedded in polymer matrix”, Journal of Applied Physics, Vol 102, pp. 064305-7 |
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2007 |