SC
Sanatan Chattopadhyay
University of Calcutta, Newcastle University, Singapore-MIT Alliance for Research and Technology Centre, Jadavpur University
Employment
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University of Calcutta Professor2016 - Present
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University of Calcutta Associate Professor2013 - 2016
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University of Calcutta Assistant Professor2007 - 2013
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Newcastle University Lecturer2003 - 2007
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Newcastle University Research Associate2001 - 2003
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Singapore-MIT Alliance for Research and Technology Centre Post doctoral Fellow1999 - 2001
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Indian Institute of Technology Kharagpur Junior Project Assistant1996 - 1999
Education
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University of Calcutta M.Sc.
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Newcastle University PGCAP
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Jadavpur University Ph. D.
Projects & Funding
Projects & funding information is unavailable.
Publications (255)
- Understanding the impact of geometrical design aspects on the performance of double quantum dot nanowire field-effect transistors (DQD-NWFETs) as a platform for possible charge qubit generation Save
- Development of voltage-assisted highly-oriented high hydrophobic ZnO nanowire array on metal surface for microfluidics applications Save
- Detection and quantification of Arsenic in water using voltage-assisted CBD grown ZnO Nanorods Save
- Development of Nanoparticle-Induced Room Temperature CH4 Sensing on SnO2 Films for Enhanced Sensitivity Save
- Investigating the Impact of Noble Metal Nanoparticle Decorated Electrodes on Electrochemical Sensing of Hemoglobin Save
- Investigating the impact of AuNP decoration on SnO2 thin films for enhanced room temperature methane sensing Save
- Nonfilamentary Switching With Trap-Controlled Capacitive Charge Modulation in GaOx/HfOx Heterostructures on Flexible Substrate Save
- Development of high-hydrophobic ZnO nanowires on metal surface for graded wetting and no-voltage droplet displacement by negligible tilt angle Save
- Design and modeling of resonant tunneling transport-controlled voltage-induced double quantum dot channel nanowire field-effect-transistor (DQD-FET) for multi-threshold current levels Save
- Exploring the Ga-doping dependent optical transparency and electrical conductivity of thermally evaporated P-type ZnO films Save