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Regio- and stereospecific assembly of di­spiro­[indoline-3,3′-pyrrolizine-1′,5′′-thia­zolidines] from simple precursors using a one-pot procedure: synthesis, spectroscopic and structural characterization, and a proposed mechanism of formation

The synthesis and characterization of three new di­spiro­[indoline-3,3′-pyrrolizine-1′,5′′-thia­zolidine] com­pounds are reported, together with the crystal structures of two of them. (3RS,1′SR,2′SR,7a′SR)-2′-(4-Chloro­phen­yl)-1-hexyl-2′′-sulfanyl­idene-5′,6′,7′,7a′-tetra­hydro-2′H-di­spiro­[indoli...

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Detalles Bibliográficos
Autores principales: Romo, Pablo, Quiroga, Jairo, Cobo, Justo, Glidewell, Christopher
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7404731/
https://www.ncbi.nlm.nih.gov/pubmed/32756041
http://dx.doi.org/10.1107/S2053229620009791
Descripción
Sumario:The synthesis and characterization of three new di­spiro­[indoline-3,3′-pyrrolizine-1′,5′′-thia­zolidine] com­pounds are reported, together with the crystal structures of two of them. (3RS,1′SR,2′SR,7a′SR)-2′-(4-Chloro­phen­yl)-1-hexyl-2′′-sulfanyl­idene-5′,6′,7′,7a′-tetra­hydro-2′H-di­spiro­[indoline-3,3′-pyrrolizine-1′,5′′-thia­zolidine]-2,4′′-dione, C(28)H(30)ClN(3)O(2)S(2), (I), (3RS,1′SR,2′SR,7a′SR)-2′-(4-chloro­phen­yl)-1-benzyl-5-methyl-2′′-sulfanyl­idene-5′,6′,7′,7a′-tetra­hydro-2′H-di­spiro­[in­doline-3,3′-pyrrolizine-1′,5′′-thia­zolidine]-2,4′′-dione, C(30)H(26)ClN(3)O(2)S(2), (II), and (3RS,1′SR,2′SR,7a′SR)-2′-(4-chloro­phen­yl)-5-fluoro-2′′-sulfanyl­idene-5′,6′,7′,7a′-tetra­hydro-2′H-di­spiro­[indoline-3,3′-pyrrolizine-1′,5′′-thia­zolidine]-2,4′′-dione, C(22)H(17)ClFN(3)O(2)S(2), (III), were each isolated as a single regioisomer using a one-pot reaction involving l-proline, a substituted isatin and (Z)-5-(4-chloro­benzyl­idene)-2-sulfanyl­idene­thia­zolidin-4-one [5-(4-chloro­benzyl­idene)rhodanine]. The com­positions of (I)–(III) were established by elemental analysis, com­plemented by high-resolution mass spectrometry in the case of (I); their constitutions, including the definition of the regiochemistry, were established using NMR spectroscopy, and the relative configurations at the four stereogenic centres were established using single-crystal X-ray structure analysis. A possible reaction mechanism for the formation of (I)–(III) is proposed, based on the detailed stereochemistry. The mol­ecules of (I) are linked into simple chains by a single N—H⋯N hydrogen bond, those of (II) are linked into a chain of rings by a combination of N—H⋯O and C—H⋯S=C hydrogen bonds, and those of (III) are linked into sheets by a combination of N—H⋯N and N—H⋯S=C hydrogen bonds.