Address Department of Physics, NIT Durgapur, West Bengal, India
E-mail
Research Area Nanomaterial synthesis and design, Electrocatalysis, Photocatalysis,
Research Area Nanomaterial synthesis and design, Electrocatalysis, Photocatalysis,
Theranostic Application, Sensing
Education 2016. 8 - 2021. 1 Ph.D Department of Chemical Sciences, Homi Bhabha National Institute, India
2015. 8 - 2016. 7 Post M.S. Department of Biophysics, Saha Institute of Nuclear Physics,
2015. 8 - 2016. 7 Post M.S. Department of Biophysics, Saha Institute of Nuclear Physics,
Kolkata, India
2011. 6 - 2013. 6 M.S.Department of Organic Chemistry, Presidency University, Kolkata, India
2011. 6 - 2013. 6 M.S.Department of Organic Chemistry, Presidency University, Kolkata, India
Career 2021. 9 - 2022.4 Postdoctoral Researcher, Department of Chemistry and Nano Science,
Ewha Womans University, Korea
2021. 2 - 2021. 8 Project Associate, Saha Institute of Nuclear Physics, India
Representative Publications
1. Sandip Kumar De, Sarmistha Ray, Yogita Rawat, Subrata Mondal, Arpita Nandy, Priya Verma, Anuradha Roy,
Provash Sadhukhan, Chandrima Das, Sankar Bhattacharyya,* and Dulal Senapati,*
“Porous Au-seeded Ag nanorod networks conjugated with DNA aptamers for impedimetric sensing of DENV-2”,
Sens. Actuators B Chem. 2021, 348, 130709.
2. Sandip Kumar De, Arpita Nandy, Subrata Mondal, Anuradha Roy, Sourav Mondal, and Dulal Senapati,*
“Void-Enriched and Highly Strained Porous Au–Ag Nanoalloy as a Bifunctional Electro-Catalyst in Alkaline Direct
Alcohol Fuel Cell”, ACS Appl. Energy Mater. 2021, 4, 5367–5374.
3. Sandip Kumar De, Sourabh Kumar, Sarmistha Ray, Subrata Mondal, Abhijit Roy, Gourab Bhattacharjee,
Arpita Nandy, Anuradha Roy, Biswarup Pathak,* and Dulal Senapati,* “Au-Seeded Ag-Nanorod Networks
for Electrocatalytic Sensing”, ACS Appl. Nano Mater. 2020, 3, 9969-9983.
4. Sandip Kumar De, Subrata Mondal, Pintu Sen, Uttam Pal, Biswarup Pathak, kuber Singh Rawat, Munmun Bardhan,
Maireyee Bhattacharya, Biswarup Satpati, Amitabha De and Dulal Senapati,* “Crystal-defect-induced facet-
dependent electrocatalytic activity of 3D gold nanoflowers for the selective nanomolar detection of ascorbic acid”,
Nanoscale, 2018, 10, 11091.

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