Abstract
In the title compound, C18H14N4O2, the triazole ring makes dihedral angles of 77.32 (8) and 75.56 (9)°, respectively, with the indoline residue and the terminal phenyl group. In the crystal, molecules are linked by C—H⋯N hydrogen bonds into tapes parallel to the b axis. The tapes are linked together by π–π interactions between triazole rings [inter-centroid distance = 3.4945 (9) Å].
Highlights
In the title compound, C18H14N4O2, the triazole ring makes dihedral angles of 77.32 (8) and 75.56 (9), respectively, with the indoline residue and the terminal phenyl group
Molecules are linked by C—H N hydrogen bonds into tapes parallel to the b axis
The molecules are linked by C11–H11···N2 and C11–H11···N3 hydrogen bonds in the way to build bands parallel to the b axis direction
Summary
Absorption correction: multi-scan [CrysAlis PRO (Agilent, 2013), using expressions derived from. Refinement a Laboratoire de Chimie Organique Appliquée, Université Sidi Mohamed Ben. Abdallah, Faculté des Sciences et Techniques, Route d’Immouzzer, BP 2202 Fès, Morocco, bLaboratoire de Chimie Organique Hétérocyclique, URAC 21, Pôle de compétences Pharmacochimie, Université Mohammed V-Agdal, BP 1014 Avenue. Ibn Batouta, Rabat , Morocco, cX-Ray Structure Analysis, University of Regensburg, D-93053 Regensburg, Germany, and dLaboratoire de Chimie du Solide Appliquée, Faculté des Sciences, Université Mohammed V-Agdal, Avenue Ibn Battouta, BP. The tapes are linked together by – interactions between triazole rings [inter-centroid distance = 3.4945 (9) Å]. For the biological activity of indoline derivatives, see: Bhrigu et al (2010); Da Silva et al (2001); Ramachandran (2011); Smitha et al (2008). For structures of indoline-2,3-dione derivatives, see: Qachchachi et al (2013, 2014). Supporting information for this paper is available from the IUCr electronic archives (Reference: BT6975)
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