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Ph.D


Mr. Sk Samir Ahamed

Full-Time Scholar
samirchem15@gmail.com | samirchem@nitm.ac.in
7044072055
Area of Research : Unimolecular reaction dynamics in condensed phase molecular systems. Energy transfer in different bath systems.
Conference Attended :

  • National Conference on Recent Advances in Chemistry, RAC-2019, October 14-15, NIT Meghalaya, Shillong.
  • Workshop on “Supporting Chemistry Research with modern DFT (Density Functional Theory): Software, Techniques, and Applications” ,February 5-15th,2021,organised by Sankalchand Patel University, Gujarat.
  • Research Conclave, NIT Meghalaya, 2020
  • Research Conclave, NIT Meghalaya, 2021
  • International conference on recent developments in chemistry, RDC 2021, March 3-5th, NIT Durgapur

Publications :
  • Mahanta, H.; Baishya, D.; Ahamed, S. S.; Paul, A. K. A Better Understanding of the Unimolecular Dissociation Dynamics of Weakly Bound Aromatic Compounds at HighTemperature: A Study on C6H6?C6F6 and Comparison with C6H6 Dimer. J. Phys. Chem. A, 2019, 123, 2517-2526.
  • Mahanta, H.; Baishya, D.; Ahamed, S. S.; Paul, A. K. Chemical Dynamics Simulations on Association and Ensuing Dissociation of a Benzene?Hexafluorobenzene Molecular System. J. Phys. Chem. A2019, 123, 5019-5026.
  • Ahamed, S. S.; Mahanta, H.; Paul, A. K.Unimolecular Dissociation of C6H6-C6F6 Complex in N2 Bath and Comparison with Gas Phase Dynamics. Chemical Physics letters. 2019, 730, 630-633.
  • Ahamed, S. S.;Mahanta, H.;Paul, A. A Competition Between Dissociation Pathway and Energy Transfer Pathway: Unimolecular Dissociation of Benzene-Hexafluorobenzene Complex in Nitrogen Bath. . Phys. Chem. A 2019, 123, 10663-10675.
  • Ahamed, S. S.; Kumar, P.; Kalita, H.; Paul, A. K. Mode-to-Mode Collision Energy Transfer from Vibrationally Excited C6F6 to NO/N2 Mixed Bath with the Development of New Potential EnergyFunctions, Chem. Select.2020, 5, 10475-10487.
  • Ahamed, S. S.; Kim, H.: Paul, A. K.; West, N. A.; Winner, J. D.; Donzis, D. A.; North, S. W.; Hase, W. L. Comparison of Intermolecular Energy Transfer from Vibrationally Excited Benzene in Mixed Nitrogen-Benzene Baths at 140 and 300 K, J. Chem. Phys. 2020, 153, 144116.

Awards & Achievements :
  • GATE 2018