Animesh Ghosh
Indian Institute of Chemical Technology
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Publication
Featured researches published by Animesh Ghosh.
Journal of Organic Chemistry | 2013
Atanu Basak; Kuheli Chakrabarty; Animesh Ghosh; Gourab Kanti Das
The mechanism of gold(III) [Au(III)]-catalyzed isomerization of alkyl-substituted allenes to conjugated dienes in the presence of a nitroso compound (additive) was studied quantum mechanically using hybrid density functional PBE0 with 6-31G** basis set for lighter atoms and (aug)-ccpVDZ basis set and LANL2 electron core potential for Au atom. Several pathways, involving the nitroso compound in a free or bound state to the gold-allene (GA) complex, were investigated. Calculated results reveal that the unbound nitroso compound acts as a better proton transferring agent in the isomerization process and utilizes its own nitrogen atom to carry the proton. While comparing the efficiency of other basic reagents to carry out the process, it appeared that the moderate basicity of the nitroso compound plays a crucial role to reduce the activation barrier of the reaction pathway. A similar pathway was also investigated using a gold(I) [Au(I)] catalyst and found to be less favorable than the process catalyzed by a Au(III) catalyst. All these facts agree well with the experimental reports for the reaction.
Tetrahedron | 2001
Tushar Kanti Chakraborty; Animesh Ghosh; Ramakrishnan Nagaraj; A Ravi Sankar; Ajit C. Kunwar
Abstract A rigid carbocyclic scaffold comprising of an all- cis 4,5-dihydroxy-1,3-cyclopentanedicarboxylic acid is developed. Attachment of peptide strands to the carboxylic groups of this novel template led to the peptidomimetics 2 and 3 . Conformational analysis by circular dichroism and NMR studies revealed that these molecules adopt a unique folded structure in nonpolar solvent involving intramolecular hydrogen bonding between PheNH of one strand and LeuCO (in 2 ) or GlyCO (in 3 ) of the other strand. This structure is very different from the structures observed earlier in their sugar counterparts ( 1 ). The paper describes in detail the synthesis and structural studies of compounds 2 and 3 .
Journal of Organic Chemistry | 2014
Animesh Ghosh; Atanu Basak; Kuheli Chakrabarty; Boyli Ghosh; Gourab Kanti Das
Gold-catalyzed isomerization of propargylic ester to a diketone derivative is a fascinating example for the generation of the C-C bond in organoaurate chemistry as it is one of the few reactions that exploit the nucleophilicity of organoaurates to a migrating acyl group. The proposed mechanistic pathway, involving the formation of a four-membered intermediate, has never been substantiated by any theoretical or experimental evidence. Detailed theoretical calculation suggests that the formation of an alkylideneoxoniumcyclobutene intermediate is highly unlikely. Instead, an acyl migration, assisted by the chlorine ligand in the square planar geometry of metal complex offers an alternative mechanism that can justify the reasonable activation barrier and the associated stereochemical feature involved in the reaction. The initial mandatory steps of the catalytic process such as allene formation (af) and rotamerization of allene-bound gold complex (ra) are found to be quite facile. However, the final step, acyl migration (am), that takes place through the formation of an intermediate with C-Cl bond, acts as the rate-determining step of the reaction. The mechanism also justifies the lack of sufficient activity of Au(I) salt to catalyze the isomerization process.
Tetrahedron Letters | 2002
Tushar Kanti Chakraborty; Animesh Ghosh; A Ravi Sankar; Ajit C. Kunwar
2,3-Diazabicyclo[2.2.1]heptane 1 is used for the first time as a peptidomimetic scaffold in the synthesis of a conformationally constrained analogue 6 of azaproline (or azapipecolic acid) containing peptides.
Journal of Theoretical and Computational Chemistry | 2016
Kuheli Chakrabarty; Atanu Basak; Animesh Ghosh; Gourab Kanti Das
ONIOM studies were performed on the transition structure (TS) of organocatalytic direct aldol reaction by using ionic liquid supported benzoic acid (ILS-PhCO2H) as an additive. Results obtained from this computation suggest direct involvement of ILS-PhCO2H in the TS as a proton donor. It has also come out from the present study that, the counter ion of the ILS-acid additive may also play significant role to maintain the proper TS geometry by holding the organocatalyst and the acid additive close together during the course of reaction.
Journal of Theoretical and Computational Chemistry | 2016
Atanu Basak; Kuheli Chakrabarty; Animesh Ghosh; Gourab Kanti Das
Biosynthesis of polyterpenoid and related molecules are largely accomplished via mevalonate pathway. One of the vital steps in this pathway is the inter-conversion of two intermediates isopentenyl pyrophosphate (IPP) and dimethylallyl pyrophosphate (DMAPP) catalyzed by IPP:DMAPP isomerase (IDI). The crystal structure of the enzyme, bound to the substrate analogues and inhibitors, revealed possible mechanism of this inter-conversion; however, none of them could affirm the true nature of the transition state through which the process is taking place. Our DFT study on the pathway of this isomerization reaction at the active site of the enzyme suggests a favorable concerted mechanism that occurs through a single transition structure without generating any carbocation intermediate. In this mechanism, the Cys-67 residue acts as proton donor whereas Glu-116 acts as proton acceptor. The mechanism also reveals the active involvement of other two components present at the active site. A crystallographic water molecule (Wat508) and Glu-87 assist to reprotonate the conjugate base of cysteine residue through a proton shuttle mechanism while forming the transition structure of the isomerization reaction.
Chemistry Letters | 2003
Tushar Kanti Chakraborty; Animesh Ghosh; T. Venugopal Raju
Journal of Organic Chemistry | 2003
Tushar Kanti Chakraborty; Animesh Ghosh; Ajit C. Kunwar
Tetrahedron Letters | 2002
Tushar Kanti Chakraborty; Animesh Ghosh
Synlett | 2002
Tushar Kanti Chakraborty; Animesh Ghosh