Swapnadeep Jalal
Jadavpur University
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Publication
Featured researches published by Swapnadeep Jalal.
Organic Letters | 2014
Kartick Paul; Krishnendu Bera; Swapnadeep Jalal; Soumen Sarkar; Umasish Jana
A new and efficient protocol to synthesize substituted benzo[b]carbazole derivatives has been demonstrated involving iron-catalyzed domino isomerization/cyclodehydration sequences from substituted 2-[(indoline-3-ylidene)(methyl)]benzaldehyde derivatives. The substrates could be easily made via Pd-catalyzed domino Heck-Suzuki coupling from 2-bromo-N-propargylanilide derivatives in high yields. Notably, the generality and efficiency of this two-stage domino strategy was further exemplified by the synthesis of a polycyclic benzofuran derivative.
Journal of Organic Chemistry | 2016
Kartick Paul; Swapnadeep Jalal; Sandip Kundal; Umasish Jana
A range of tetracyclic dibenzofuran derivatives bearing a variety of functional groups was readily synthesized via a two-stage domino strategy starting from propargyl ethers of 2-halo phenol derivatives. The first stage in the strategy involves Pd(0)-catalyzed domino intramolecular carbopalladation/Suzuki coupling via 5-exo-dig cyclization onto the alkyne, leading to 3-methylene-2,3-dihydrobenzofuran derivatives. In the second stage of the domino strategy, an iron(III)-catalyzed cycloisomerization and aromatization reaction produces tetracyclic benzofuran derivatives. This two-step sequence provides efficient access to diversely substituted polycyclic dibenzofuran derivatives in high yields and in an atom-efficient and environmentally friendly manner. Moreover, this strategy was also successfully used for the synthesis of a naturally occurring tetracyclic dibenzofuran, β-brazan.
Journal of Organic Chemistry | 2018
Baitan Chakraborty; Swapnadeep Jalal; Kartick Paul; Sandip Kundal; Umasish Jana
A new and efficient synthesis of tetracyclic phenanthridines and benzo[ c]chromenes has been described involving a metal-mediated two-step domino strategy. The first step involved efficient palladium-catalyzed domino carbopalladation/cross coupling, and the second step involved iron-catalyzed domino isomerization/cyclodehydration. The important features of this strategy include high yields, generality, wide substrate scope, and broad functional group tolerance. A plausible mechanism has been proposed to explain the formation of the product.
Journal of Organic Chemistry | 2012
Krishnendu Bera; Soumen Sarkar; Swapnadeep Jalal; Umasish Jana
European Journal of Organic Chemistry | 2013
Swapnadeep Jalal; Soumen Sarkar; Krishnendu Bera; Sukhendu Maiti; Umasish Jana
European Journal of Organic Chemistry | 2013
Soumen Sarkar; Krishnendu Bera; Swapnadeep Jalal; Umasish Jana
Organic and Biomolecular Chemistry | 2014
Krishnendu Bera; Swapnadeep Jalal; Soumen Sarkar; Umasish Jana
Tetrahedron Letters | 2012
Soumen Sarkar; Sukhendu Maiti; Krishnendu Bera; Swapnadeep Jalal; Umasish Jana
Organic and Biomolecular Chemistry | 2014
Swapnadeep Jalal; Krishnendu Bera; Soumen Sarkar; Kartick Paul; Umasish Jana
European Journal of Organic Chemistry | 2015
Sandip Kundal; Swapnadeep Jalal; Kartick Paul; Umasish Jana