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Dive into the research topics where Mysore S. Pavan is active.

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Featured researches published by Mysore S. Pavan.


Journal of Physical Chemistry Letters | 2016

Is CH3NH3PbI3 Polar

Sharada G; Pratibha Mahale; Bhushan P. Kore; Somdutta Mukherjee; Mysore S. Pavan; Chandan De; Somnath Ghara; A. Sundaresan; Anshu Pandey; Tayur N. Guru Row; D. D. Sarma

In view of the continued controversy concerning the polar/nonpolar nature of the hybrid perovskite system, CH3NH3PbI3, we report the first investigation of a time-resolved pump-probe measurement of the second harmonic generation efficiency as well as using its more traditional form as a sensitive probe of the absence/presence of the center of inversion in the system both in its excited and ground states, respectively. Our results clearly show that SHG efficiency, if nonzero, is below the limit of detection, strongly indicative of a nonpolar or centrosymmetric structure. Our results on the same samples, based on temperature dependent single crystal X-ray diffraction and P-E loop measurements, are entirely consistent with the above conclusion of a centrosymmetric structure for this compound in all three phases, namely the high temperature cubic phase, the intermediate temperature tetragonal phase and the low temperature orthorhombic phase. It is important to note that all our experimental probes are volume averaging and performed on bulk materials, suggesting that basic material properties of CH3NH3PbI3 are consistent with a centrosymmetric, nonpolar structure.


Journal of Physical Chemistry A | 2011

Extending the Supramolecular Synthon Based Fragment Approach (SBFA) for Transferability of Multipole Charge Density Parameters to Monofluorobenzoic Acids and their Cocrystals with Isonicotinamide: Importance of C–H···O, C–H···F, and F···F Intermolecular Regions

Venkatesha R. Hathwar; Tejender S. Thakur; Ritesh Dubey; Mysore S. Pavan; Tayur N. Guru Row; Gautam R. Desiraju

An extension of the supramolecular synthon-based fragment approach (SBFA) method for transferability of multipole charge density parameters to include weak supramolecular synthons is proposed. In particular, the SBFA method is applied to C-H···O, C-H···F, and F···F containing synthons. A high resolution charge density study has been performed on 4-fluorobenzoic acid to build a synthon library for C-H···F infinite chain interactions. Libraries for C-H···O and F···F synthons were taken from earlier work. The SBFA methodology was applied successfully to 2- and 3-fluorobenzoic acids, data sets for which were collected in a routine manner at 100 K, and the modularity of the synthons was demonstrated. Cocrystals of isonicotinamide with all three fluorobenzoic acids were also studied with the SBFA method. The topological analysis of inter- and intramolecular interaction regions was performed using Baders AIM approach. This study shows that the SBFA method is generally applicable to generate charge density maps using information from multiple intermolecular regions.


IUCrJ | 2014

Crystal landscape in the orcinol:4,4′-bipyridine system: synthon modularity, polymorphism and transferability of multipole charge density parameters

Ritesh Dubey; Mysore S. Pavan; Tayur N. Guru Row; Gautam R. Desiraju

The role of the supramolecular synthon as the operational structural unit in the late stages of the crystallization event is highlighted with reference to polymorphs and pseudopolymorphs in the orcinol–bipyridine cocrystal system.


Journal of Chemical Sciences | 2016

Analysis of an unusual hetero-halogen bonded trimer using charge density analysis: A case of concerted type I Br⋯Br and type II Br⋯Cl interactions

Mysore S. Pavan; Tayur N. Guru Row

AbstractThe crystal structure of 4−bromo−2−chlorobenzoic acid generates an unusual triangular motif consisting of a hitherto uncharacterized Type I Br⋯Br contact along with two Type II Br⋯Cl interactions as edges of the triangle. The nature of such bonding is analyzed based on both experimental and theoretical charge density followed by topological analysis. Graphical AbstractAn unusual triangular motif consisting of a hitherto uncharacterized Type I Br⋯×Br contact along with two Type II Br⋯Cl interactions as edges of the triangle is seen in the crystal structure of 4−bromo−2−chlorobenzoic acid. The nature of such bonding is analyzed based on both experimental and theoretical charge density followed by topological analysis.


Acta Crystallographica Section B Structural Crystallography and Crystal Chemistry | 2016

Topological characterization of electron density, electrostatic potential and intermolecular interactions of 2-nitroimidazole: an experimental and theoretical study

Chinnasamy Kalaiarasi; Mysore S. Pavan; Poomani Kumaradhas

An experimental charge density distribution of 2-nitroimidazole was determined from high-resolution X-ray diffraction and the Hansen-Coppens multipole model. The 2-nitroimidazole compound was crystallized and a high-angle X-ray diffraction intensity data set has been collected at low temperature (110 K). The structure was solved and further, an aspherical multipole model refinement was performed up to octapole level; the results were used to determine the structure, bond topological and electrostatic properties of the molecule. In the crystal, the molecule exhibits a planar structure and forms weak and strong intermolecular hydrogen-bonding interactions with the neighbouring molecules. The Hirshfeld surface of the molecule was plotted, which explores different types of intermolecular interactions and their strength. The topological analysis of electron density at the bond critical points (b.c.p.) of the molecule was performed, from that the electron density ρbcp(r) and the Laplacian of electron density ∇2ρbcp(r) at the b.c.p.s of the molecule have been determined; these parameters show the charge concentration/depletion of the nitroimidazole bonds in the crystal. The electrostatic parameters like atomic charges and the dipole moment of the molecule were calculated. The electrostatic potential surface of the molecule has been plotted, and it displays a large electronegative region around the nitro group. All the experimental results were compared with the corresponding theoretical calculations performed using CRYSTAL09.


RSC Advances | 2014

Charge density distribution and electrostatic interactions of ethionamide: an inhibitor of the enoyl acyl carrier protein reductase (inhA) enzyme of Mycobacterium tuberculosis

G. Rajalakshmi; Mysore S. Pavan; Poomani Kumaradhas

An experimental charge density analysis of an anti-TB drug ethionamide was carried out from high resolution X-ray diffraction at 100 K to understand its charge density distribution and electrostatic properties. The experimental results were validated from periodic theoretical charge density calculations performed using CRYSTAL09 at the B3LYP/6-31G** level of theory. The electron density rho(bcp)(r) and the Laplacian of electron density del(2)(rho bcp)(r) of the molecule calculated from both the methods display the charge density distribution of the ethionamide molecule in the crystal field. The electrostatic potential map shows a large electropositive region around the pyridine ring and a large electronegative region at the vicinity of the thiol atom. The calculated experimental dipole moment is 10.6D, which is higher than the value calculated from theory (8.2D). The topological properties of C-H center dot center dot center dot S, N-H center dot center dot center dot N and N-H center dot center dot center dot S hydrogen bonds were calculated, revealing their strength. The charge density analysis of the ethionamide molecule determined from both the experiment and theory gives the topological and electrostatic properties of the molecule, which allows to precisely understand the nature of intra and intermolecular interactions.


Acta Crystallographica Section B Structural Crystallography and Crystal Chemistry | 2017

Exploring the rare S—H⋯S hydrogen bond using charge density analysis in isomers of mercapto­benzoic acid

Mysore S. Pavan; Sounak Sarkar; Tayur N. Guru Row

Experimental and theoretical charge density analyses on isomers of mercaptobenzoic acid have been carried out to quantify the hydrogen bonding of the hitherto less explored thiols, to assess the strength of the interactions using the topological features of the electron density. The electron density study offers interesting insights into the nature of the S-H...S interaction. The interaction energy is comparable with that of a weak hydrogen bond. The strength and directionality of the S-H...S hydrogen bond is demonstrated to be mainly due to the conformation locking potential of the intramolecular S...O chalcogen bond in 2-mercaptobenzoic acid and is stronger than in 3-mercaptobenzoic acid, which lacks the intramolecular S...O bond. The para-substituted mercaptobenzoic acid depicts a type I S...S interaction.


Chemical Communications | 2014

Experimental evidence for ‘carbon bonding’ in the solid state from charge density analysis

Sajesh P. Thomas; Mysore S. Pavan; T. N. Guru Row


Chemical Communications | 2013

Halogen bonding in fluorine: experimental charge density study on intermolecular F···F and F···S donor-acceptor contacts.

Mysore S. Pavan; Karothu Durga Prasad; T. N. Guru Row


Physical Chemistry Chemical Physics | 2015

Experimental validation of ‘pnicogen bonding’ in nitrogen by charge density analysis

Sounak Sarkar; Mysore S. Pavan; T. N. Guru Row

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Tayur N. Guru Row

Indian Institute of Science

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Gautam R. Desiraju

Indian Institute of Science

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Ritesh Dubey

Indian Institute of Science

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Sounak Sarkar

Indian Institute of Science

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T. N. Guru Row

Indian Institute of Science

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Sajesh P. Thomas

University of Western Australia

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Tejender S. Thakur

Indian Institute of Science

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