Department of Atomic Energy, Govt. of India
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Dr. Biswarup Satpati

Room No : Isotope Bldg
Ext. : 4215 (office) /3128 (lab)
Email id : biswarup.satpati[AT]
Division :
Personal Webpage
Ph.D Year : 2006
Ph.D Institute : Institute of Physics, Bhubaneswar
Joined as Faculty Member in : 2010

Selected Publications:

D-Band Engineering in Pd-Based Nanowire Networks for Further Enhancement in Ethanol Electrooxidation Reaction
Tukai Singha, Shalini Tomar, Shuvankar Das, Biswarup Satpati*
Small Methods 2024, 2400368  IF: 12.4

Improved Alcohol Oxidation through Combined Effects of Tensile Lattice Strain and Twin Defects in Core–Shell Electrocatalysts
Tukai Singha, Shalini Tomar, Sudip Chakraborty, Shuvankar Das, Biswarup Satpati*
Small 2024, 2309736  IF: 13.3

Multiple Gold Nanoparticle Cores within a Single SiO2 Shell for Preservable Solid-State Surface-Enhanced Raman Scattering and Catalytic Sensing
Suman Dey, Smruti M. Mishra, Abhijit Roy, Anuradha Roy, Dulal Senapati, and Biswarup Satpati*
ACS Appl. Nano Mater., 2023, 6, 15606−15619   IF: 6.14

Enhanced optical properties and dark I-V characteristics of silicon nanowire-carbon quantum dots heterostructures
Smruti Medha Mishra, Suman Dey, Tukai Singha, Subhankar Mandal, Asish K. Dehury, Yatendra S. Chaudhary, Biswarup Satpati *
Materials Research Bulletin 164 (2023) 112262   IF: 5.6

Highly strained gold (Au)-palladium (Pd) core-shell nanobipyramids with extraordinary high activity and durability towards ethanol electrooxidation
Tukai Singha, Smruti Medha Mishra, Tapas Kumar Chini, Biswarup Satpati * 
Applied Surface Science 604 (2022) 154491  IF: 7.39

"Morphology of ZnO nanorods and Au–ZnO heterostructures on different seed layers and their influence on the optical behavior
Smruti Medha Mishra*, Biswarup Satpati
Journal of Luminescence 246 (2022) 118813   IF: 3.59

"A simple method of growing endotaxial silver nanostructures on silicon for applications in surface enhanced Raman scattering (SERS)"
Abhijit Roy, Tapas Kumar Chini, Biswarup Satpati*
Applied Surface Science 501 (2020) 144225  IF: 7.39

"Core-shell gold @silver hollow nanocubes for higher SERS enhancement and non-enzymatic biosensor"
Gourab Bhattacharjee, Sumit Majumder, Dulal Senapati, Sangam Banerjee, Biswarup Satpati*
Materials Chemistry and Physics 239 (2020) 122113  IF: 4.09

"Metal Nanoparticle-Decorated Silicon Nanowire Arrays on Silicon Substrate and their Applications"
Abhijit Roy* and Biswarup Satpati
Microscopy and Microanalysis  25 (6), 1407-1415 (2019)  IF: 4.12

"Electroless Deposition of Pd Nanostructures for Multifunctional Applications as Surface Enhanced Raman Scattering Substrate and Electrochemical Non-Enzymatic Sensor"
Abhijit Roy, Shib Shankar Singha, Sumit Majumder, Achintya Singha, Sangam Banerjee, and Biswarup Satpati*
ACS Appl. Nano Mater., 2019, 2, 4, 2503–2514  IF: 6.14

"Core-Shell Gold @Silver Nanorods of Varying Length for High SERS Enhancement"
-Gourab Bhattacharjee, Maireyee Bhattacharya, Abhijit Roy, Dulal Senapati, and Biswarup Satpati*
ACS Appl. Nano Mater., 2018, 1, 10, 5589-5600  IF: 6.14

"Annealing Induced Morphology of Silver Nanoparticles on Pyramidal Silicon Surface and Their Application to Surface Enhanced Raman Scattering"
Abhijit Roy, Arpan Maiti, Tapas Kumar Chini and Biswarup Satpati*
ACS Appl. Mater. Interfaces, 9, (2017) 34405−34415 IF: 10.38

"Role of oxygen in wetting of copper nanoparticles on silicon surfaces at elevated temperature" 
Tapas Ghosh and Biswarup Satpati*
Beilstein J. Nanotechnol., 8, (2017) 425  IF: 3.64

"Large nonsaturating magnetoresistance and signature of nondegenerate Dirac nodes in ZrSiS"
Ratnadwip Singha, Arnab Kumar Pariari, Biswarup Satpati, and Prabhat Mandal*
Proceedings of the National Academy of Sciences, 114, (2017) 2468  IF: 11.20

"A high-temperature ferromagnetic topological insulating phase by proximity coupling"
Ferhat Katmis*, Valeria Lauter*, Flavio S. Nogueira, Badih A. Assaf, Michelle E. Jamer, Peng Wei, Biswarup Satpati, John W. Freeland, Ilya Eremin, Don Heiman, Pablo Jarillo-Herrero & Jagadeesh S. Moodera 
NATURE, 533, 513–516 (2016)  IF: 49.96

"Electrochemical Ostwald Ripening and Surface Diffusion in Galvanic Displacement Reaction: Control over Particle Growth
Tapas Ghosh, Prasanta Karmakar and Biswarup Satpati*
RSC Advances, 2015, 5, 94380 - 94387.  IF: 3.24

"Study of inelastic mean free path of metal nanostructures using energy filtered transmission electron microscopy imaging"
Tanmay Ghosh, Munmun Bardhan, Maireyee Bhattacharya, and Biswarup Satpati
JOURNAL OF MICROSCOPY, 2015, 258 (3), pp. 253–258.  IF: 1.75
"Tilt boundary induced heteroepitaxy in chemically grown dendritic silver nanostructures on germanium and their optical properties"
Tanmay Ghosh, Pabitra Das, Tapas K. Chini, Tapas Ghosh and Biswarup Satpati* 
PHYSICAL CHEMISTRY CHEMICAL PHYSICS2014, 16, pp. 16730-16739.  IF: 3.67
"Site specific isolated nanostructure array formation on a large area by broad ion beam without any mask and resist "
Prasanta Karmakar* and Biswarup Satpati
APPLIED PHYSICS LETTERS, 2014, 104, pp. 231601-5.  IF: 3.81
"Synergistically controlled nano-templated growth of tunable gold bud-to-blossom nanostructures: a pragmatic growth mechanism"
Munmun Bardhan, Biswarup Satpati, Tanmay Ghosh, and Dulal Senapati*
JOURNAL OF MATERIALS CHEMISTRY C, 2014, 2, pp. 3795–3804.  IF: 8.06
"Characterization of bimetallic core-shell nanorings synthesized via ascorbic acid-controlled galvanic displacement followed by epitaxial growth"
Tanmay Ghosh, Biswarup Satpati* and Dulal Senapati
JOURNAL OF MATERIALS CHEMISTRY C2014, 2, pp. 2439-2447.  IF: 8.06

"Direct Experimental Evidence of Nucleation and Kinetics Driven Two-Dimensional Growth of Core-Shell Structures"
Tanmay Ghosh and Biswarup Satpati*
JOURNAL OF PHYSICAL CHEMISTRY C2013, 117, pp. 10825−10833.  IF: 4.12



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Arthur Ashe, the legendary Wimbledon player was dying of AIDS which he got due to infected blood he received during a heart

One Paragraph That Explains Life !
Arthur Ashe, the legendary Wimbledon player was dying of AIDS which he got due to infected blood he received during a heart surgery in 1983.

From world over, he received letters from his fans, one of which conveyed: "Why does GOD have to select you for such a bad disease"?

To this Arthur Ashe replied:
"The world over -- 50 million children start playing tennis,
                                    5 million learn to play tennis,
                                    500,000 learn professional tennis,
                                      50,000 come to the circuit,
                                         5,000 reach the grand slam,
                                               50 reach Wimbledon,
                                                 4 to semi final,
                                                 2 to the finals,

When I was holding a cup I never asked GOD 'Why me?'

And today in pain I should not be asking GOD 'Why me?'


Some recognition
Please look page 28 in this


Last Updated on Friday, 11 April 2014 19:21
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