Teaching Experience: ~11 yrs
Research Experience: ~17 Years
Post PhD Experience: ~ 12 Yrs
Fluorescence Spectroscopy, Quantum Chemical Calculation
Title | Investigator | Co-investigator | Sponsered Agency | Duration | Status |
---|---|---|---|---|---|
Title: Development of highly efficient microwave absorber through controlled fluorescent nanoparticle localization in an immiscible polymer blend. Investigator: Dr. S S Panja Sponsoring Organisation: SERB-DST, GOI Amount: 55 Lacs Starting Year: 2017 Status: On-going
Title: Rhodamine-based fluorescence probe for biologically important metal ions Sponsoring Organisation: DST, Govt. of India Investigator: Dr. S S Panja (PI) and Dr. Suryasarathi Bose (Co-PI, IISc Bangalore) Amount: 18.9 Lacs Starting Year: 2009 Status: Completed |
Ongoing |
CY-01 Engineering Chemistry
CYS-51 Chemistry Sessional
CYC-331 Chemistry-II (Physical chemistry)
CYC-301 States of matter and Thermodynamics
CY 1101 Physical Chemistry – 1
CY 1151 Basic Physical Chemistry Laboratory
CY 2101 Physical Chemistry – 2
CY 2151 Kinetic and Electrochemical Analysis
CY 3101 Physical Chemistry – 3
CY 3151 Spectrophotochemical Analysis
CY 9113 Advanced Physical Chemistry -3
CY 9114 Advanced Physical Chemistry -4
Sl.No. | Title | Name of the PI | Name of the CoPIs | Funding Agency | Amount (Rs.) | Project Type | Project Status | Date of Initiation | Date of Completion |
---|---|---|---|---|---|---|---|---|---|
1 | Development of highly efficient microwave absorber through controlled fluorescent nanoparticle localization in an immiscible polymer blend. | Dr. S S Panja | SERB-DST | 5,500,000 | Sponsored | Ongoing | 2017 | ||
2 | Rhodamine-based fluorescence probe for biologically important metal ions | Dr. S S Panja | Dr. Suryasarathi Bose (Co-PI, IISc Bangalore) | DST, Govt. of India | 1,890,000 | Sponsored | Completed | 2009 |
Sl.No. | Title | Name of the PI | Name of the CoPIs | Funding Agency | Amount (Rs.) | Project Type | Project Status | Date of Initiation | Date of Completion |
---|---|---|---|---|---|---|---|---|---|
1 | Development of highly efficient microwave absorber through controlled fluorescent nanoparticle localization in an immiscible polymer blend. | Dr. S S Panja | SERB-DST | 5,500,000 | Sponsored | Ongoing | 2017 | ||
2 | Rhodamine-based fluorescence probe for biologically important metal ions | Dr. S S Panja | Dr. Suryasarathi Bose (Co-PI, IISc Bangalore) | DST, Govt. of India | 1,890,000 | Sponsored | Completed | 2009 |
Sl.No. | Title | Name of the PI | Name of the CoPIs | Funding Agency | Amount (Rs.) | Project Type | Project Status | Date of Initiation | Date of Completion |
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ID | Details | Year |
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0000 | 1. 35. A Sikdar, S Roy, RB Mahto, SS Mukhopadhyay, K Haldar, S S Panja, 2019, Ratiometric fluorescence sensing of Cu(II): Elucidation of FRET mechanism and bio-imaging application,ChemistrySelect 3 (46), 13103-13109 34. Soma Sarkar, Tapashree Mondal, Swapnadip Roy, Rajnarayan Saha, Ashish Kumar Ghosh and Sujit S. Panja, 2018, A multi-responsive thiosemicarbazone-based probe for detection and discrimination of group12 metal ions and its application in logic gates, New Journal of Chemistry, 42, 15157-15169 33. Sourav Biswas, Sujit Sankar Panja, and Suryasarathi Bose, 2018, Physical Insight Into the Mechanism of Electromagnetic Shielding in Polymer Nanocomposites Containing Multiwalled Carbon Nanotubes and Inverse-Spinel Ferrites, J. Phys. Chem. C, DOI: 10.1021/acs.jpcc.8b05867 32. Sikdar A., Roy S., Dasgupta S., Mukherjee S., Panja S.S., 2018. Logic gate-based Rhodamine-methionine conjugate highly sensitive fluorescent probe for Hg2+ ion and its application: An experimental and theoretical study, Sensors and Actuators B: Chemical 263, 298-311. 31 Biswas S., Panja S.S., Bose S., 2018. Tailored distribution of nanoparticles in bi-phasic polymeric blends as emerging materials for suppressing electromagnetic radiation: challenges and prospects, Journal of Materials Chemistry C 6-13, 3120-3142. 30. Sarkar S., Roy S., Saha R.N., Panja S.S., 2018. Thiophene Appended Dual Fluorescent Sensor for Detection of Hg 2+ and Cysteamine, Journal of fluorescence, 28, 427-437. 29. Biswas S., Dutta S., Panja S. S., Bose S., 2017. Hollow semiconductor Nanosphere-anchored graphene oxide sheets for effective microwave absorption, Chemistry Select, 2, 10840-10847. 28. Biswas S., Panja S.S., Bose S., 2017. Unique Multilayered Assembly Consisting of “Flower-Like” Ferrite Nanoclusters Conjugated with MWCNT as Millimeter Wave Absorbers, The Journal of Physical Chemistry C, 121 (26), 13998-14009 27. S. Chakraborty, S. Dutta, R.N. Saha, S.C. Moi, D. Sukul, S.S. Panja, 2017, Efficacy of a photo-catalyst towards the degradation of a pharmaceutical compound, 4-aminopyridine by application of response surface methodology, DESALINATION AND WATER TREATMENT, 76, 389-397 26. Biswas S., Bhattacharjee Y., Panja S.S., Bose S., 2017, Rational design of multilayer ultrathin nano-architecture by coupling of soft conducting nanocomposite with ferrites and porous structures for screening electromagnetic radiation, Chemistry Select, 2, 1094-1101. 25. S. Biswas, I. Arief, S.S. Panja, S. Bose, 2017, Absorption-dominated electromagnetic wave suppressor derived from ferrite-doped cross-linked graphene framework and conducting carbon, ACS applied materials & interfaces 9 (3), 3030-3039 24. S. Biswas, I. Arief, S.S. Panja, S. Bose, 2017, Electromagnetic screening in soft conducting composite-containing ferrites: the key role of size and shape anisotropy, Materials Chemistry Frontiers 1 (12), 2574-2589 23. S. Biswas, Y. Bhattacharjee, S.S. Panja, S. Bose, 2017, Graphene oxide co-doped with dielectric and magnetic phases as an electromagnetic wave suppressor, Materials Chemistry Frontiers, 1 (6), 1229-1244 22. S Biswas, SS Panja, S Bose, 2017, A novel fluorophore–spacer–receptor to conjugate MWNTs and ferrite nanoparticles to design an ultra-thin shield to screen electromagnetic radiation, Materials Chemistry Frontiers, 1 (1), 132-145 21. A.K. Ghosh, P. Chaudhuri, B. Kumar, S.S. Panja, 2016, Review on aggregation of asphaltene vis-a-vis spectroscopic studies, Fuel 185, 541-554 20. A.K. Ghosh, P. Chaudhuri, S.S. Panja, 2016, Steady state fluorescence spectroscopic studies on the aggregation of coal derived asphaltene at lower concentration, Fuel 185, 164-170 19. P. Chaudhuri, A.K. Ghosh, S.S. Panja, 2016, Spectroscopic Investigation of Asphaltene Aggregation in Carbon Tetrachloride Medium Containing Microquantities of Water, Journal of Dispersion Science and Technology 37 (10), 1470-1479 18. P Chaudhuri, AK Ghosh, SS Panja, 2016, Study of Molecular Complex Formation of Coal-Derived Asphaltene with TCNQ in Homogeneous and Heterogeneous Media by UV-Vis and Fluorescence Spectroscopic Studies, Journal of Dispersion Science and Technology 37 (2), 205-212 17. A Dutta, SS Panja, MM Nandi, D Sukul, 2015, Effect of optimized structure and electronic properties of some benzimidazole derivatives on corrosion inhibition of mild steel in hydrochloric acid medium: Electrochemical and theoretical studies, Journal of Chemical Sciences 127 (5), 921-929 16. P Chaudhuri, AK Ghosh, SS Panja, 2014, Absorbance spectrometric study of electron donor acceptor complexes of coal derived asphaltene with [60]-and [70] fullerenes, Fuel 126, 69-76 15. P Chaudhuri, AK Ghosh, SS Panja, 2013, Evidence of molecular complex formation between asphaltene and o-chloranil in aqueous micellar medium: A spectrophotometric study, Fuel 112, 466-472 14. A Sikdar, S Roy, K Haldar, S Sarkar, SS Panja, 2013, Rhodamine-Based Cu2+ -Selective Fluorosensor: Synthesis, Mechanism, and Application in Living Cells, Journal of fluorescence 23 (3), 495-501 13. S Sarkar, S Roy, A Sikdar, RN Saha, SS Panja, 2013, A pyrene-based simple but highly selective fluorescence sensor for Cu 2+ ions via a static excimer mechanism, Analyst 138 (23), 7119-7126 12. A Sikdar, SS Panja, P Biswas, S Roy, 2012, A rhodamine-based dual chemosensor for Cu (II) and Fe (III), Journal of fluorescence 22 (1), 443-450 11. GK Ghosh, SC Moi, SS Panja, W Linert, 2011, Kinetics and Mechanism of Interaction of Thiosemicarbazide with Di-μ-hydroxobis (1, 10-phenanthroline) Dipalladium (II) Perchlorate in Aqueous Solution, Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal 41, 15-21 10. T. Lenzer, R Bursing, A. Dittmer, S.S. Panja, D.A. Wild, K. Oum, 2010, Rotational and vibrational cooling in pulsed high-pressure molecular beam expansions from 3 bar into the supercritical regime, The Journal of Physical Chemistry A ,114 (22), 6377-6383 9. Katia Le Barbu-Debus, Francoise Lahmani, Anne Zehnacker-Rentien, Nikhil Guchhait, Sujit S Panja, Tapas Chakraborty, 2006, Fluorescence spectroscopy of jet-cooled chiral (±)-indan-1-ol and its cluster with (±)-methyl-and ethyl-lactate, The Journal of chemical physics, 125 (17), 174305 8. S Chervenkov, R Karaminkov, JE Braun, HJ Neusser, Sujit S Panja, Tapas Chakraborty, 2006, Specific and nonspecific interactions in a molecule with flexible side chain: 2-phenylethanol and its 1: 1 complex with argon studied by high-resolution UV spectroscopy, The Journal of chemical physics, 124 (23), 234302 7. SS Panja, P Biswas, T Chakraborty, 2005, Conformations and laser-induced fluorescence spectroscopy of jet-cooled 2-(p-fluorophenyl) ethanol, Chemical physics letters, 411 (1-3), 128-132 6. P Biswas, SS Panja, S Manogaran, T Chakraborty, 2005, Impact of extended π conjugation on methyl rotor-induced IVR in aromatic molecules, The Journal of Physical Chemistry A, 109 (14), 3225-3234 5. SS Panja, T Chakraborty, 2003, Discrimination of rotational isomers of 2-phenylethanol by dispersed fluorescence spectroscopy, The Journal of Physical Chemistry A, 107 (50), 10984-10987 4. SS Panja, T Chakraborty, 2003, Conformationally induced vibronic transitions in S0-S1 spectra of n-propylbenzene, The Journal of chemical physics, 119 (18), 9486-9490 3. A Das, KK Mahato, SS Panja, T Chakraborty, 2003, Conformations of indan and 2-indanol: A combined study by UV laser spectroscopy and quantum chemistry calculation, The Journal of chemical physics, 119 (5), 2523-2530 2. SS Panja, T Chakraborty, 2003, Conformational stability of allylbenzene: A combined study by dispersed fluorescence spectroscopy and quantum chemistry calculation, The Journal of chemical physics, 118 (14), 6200-6204 1. T Ghosh, SS Panja, AK Mukherjee, 2002, Enumeration of non-equivalent carbon atoms in finitely large triangulenes, rhombulenes and related structures, NISCAIR-CSIR, India SCI/SCOPUS | 0000 |
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* Fellowship of Swiss National Science Foundation, Switzerland in 2007
* Comittee member and External examiners of different Universities
* Reviewer of several International journals
* NET in 2000
Mobile : +91-9434788163
Email : sujit.panja@gmail.com
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