Sumana SenGupta
Bhabha Atomic Research Centre
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Featured researches published by Sumana SenGupta.
Journal of Physical Chemistry A | 2010
Sumana SenGupta; Yogesh N. Indulkar; Awadhesh Kumar; S. Dhanya; Prakash D. Naik; Parma Nand Bajaj
Kinetics of reaction of OH radical with morpholine, a heterocyclic molecule with both oxygen and nitrogen atoms, has been investigated using laser photolysis-laser-induced fluorescence technique, in the temperature range of 298-363 K. The rate constant at room temperature (k(298)) is (8.0 +/- 0.1) x 10(-11) molecule(-1) cm(3) s(-1). The rate constant decreases with temperature in the range studied, with the approximate dependence given by k(T) = (1.1 +/- 0.1) x 10(-11) exp[(590 +/- 20)/T] cm(3) molecule(-1) s(-1). The rate constants are high compared with those of similar heterocyclic molecules with oxygen atom but comparable to those reported for aliphatic amines. Ab initio molecular orbital calculations show that prereactive complexes, 5-7 kcal mol(-1) lower in energy as compared with the reactants, are formed because of hydrogen bond interaction between OH and the N/O atom of morpholine. The stability of the complex involving the nitrogen atom is found to be more than that involving the oxygen atom. The optimized transition-state structures and energies for the different pathways of hydrogen abstraction from these prereactive complexes explain the observation of negative activation energy.
Journal of Physical Chemistry A | 2014
Ankur Saha; Monali Kawade; Sumana SenGupta; Hari P. Upadhyaya; Awadhesh Kumar; Prakash D. Naik
The photodissociation dynamics of benzoyl chloride at 235 nm has been investigated and compared with that of 2-furoyl chloride. Atomic Cl and molecular HCl channels have been detected in benzoyl chloride by employing resonance-enhanced multiphoton ionization technique and time-of-flight mass spectrometry. Both the Cl fragments, Cl((2)PJ=3/2, relative quantum yield 0.70 ± 0.15) and Cl*((2)PJ=1/2), show isotropic angular distribution and bimodal translational energy distributions. The predominant high kinetic energy channel contributes 72% to the C-Cl bond scission and arises from the S1 state having nπ* character of benzoyl chloride. However, the low-energy Cl and HCl channels originate from the ground electronic state. The most plausible mechanism of HCl formation is proposed based on molecular orbital calculations. In contrast to benzoyl chloride, the HCl channel is not observed in 2-furoyl chloride on excitation at 235 nm, and this is attributed to an energy constraint.
Atmospheric Environment | 2011
Yogesh N. Indulkar; Sumana SenGupta; Suresh B. Waghmode; Awadhesh Kumar; S. Dhanya; Prakash D. Naik
Chemical Physics Letters | 2008
Sumana SenGupta; Hari P. Upadhyaya; Awadhesh Kumar; S. Dhanya; Prakash D. Naik; P.N. Bajaj
Journal of Chemical Physics | 2005
Sumana SenGupta; Hari P. Upadhyaya; Awadhesh Kumar; Prakash D. Naik; Paramanand Bajaj
Chemical Physics | 2014
Sumana SenGupta; Nandita Maiti; Ridhima Chadha; Sudhir Kapoor
Journal of Physical Chemistry A | 2008
Sumana SenGupta; Yogesh N. Indulkar; Awadhesh Kumar; S. Dhanya; Prakash D. Naik; Parma Nand Bajaj
Chemical Physics Letters | 2015
Sumana SenGupta; Nandita Maiti; Ridhima Chadha; Sudhir Kapoor
Chemical Physics | 2016
Ankur Saha; Sumana SenGupta; Awadhesh Kumar; Sipra Choudhury; Prakash D. Naik
Journal of Chemical Physics | 2008
Sumana SenGupta; Yogesh N. Indulkar; Awadhesh Kumar; Prakash D. Naik; Paramanand Bajaj