Title:
Highly stable naphthalene core based novel cleft-shaped strain molecule: Influence of intermolecular H-bonding architectures

dc.contributor.authorSumit Kumar Panja
dc.contributor.authorNidhi Dwivedi
dc.contributor.authorSatyen Saha
dc.date.accessioned2026-02-07T08:20:41Z
dc.date.issued2016
dc.description.abstractThe significance of intermolecular classical and non-classical H-bonding interactions in the stabilization of a naphthalene core based conformationally rigid cleft-shaped 1,5-dioxocin (BNAP) is presented here. The importance of H-bonding interactions to account for the unusual stability of a catalytically important novel molecule is reported for the first time. In addition to strong CH⋯π interactions, the formation of the unique intermolecular seven-membered H-bonded ring in the crystalline state through classical and non-classical H-bonding interaction was found to provide the unusual stability. This supramolecular structure was also found to impart stability in the presence of a strong acid as evident from the detailed UV-Visible spectroscopic studies. In addition to DFT calculations, the Hirshfeld surfaces, mapped with dnorm, and 2D fingerprint plots, support the existence of these classical and non-classical H-bonding and CH⋯π interactions. Furthermore, BNAP shows its remarkable catalytic activity for the Knoevenagel condensation reaction. © 2016 The Royal Society of Chemistry.
dc.identifier.doi10.1039/c6ra06855c
dc.identifier.issn20462069
dc.identifier.urihttps://doi.org/10.1039/c6ra06855c
dc.identifier.urihttps://dl.bhu.ac.in/bhuir/handle/123456789/29927
dc.publisherRoyal Society of Chemistry
dc.titleHighly stable naphthalene core based novel cleft-shaped strain molecule: Influence of intermolecular H-bonding architectures
dc.typePublication
dspace.entity.typeArticle

Files

Collections