Abstract

In the title compound, C23H17Cl2F3N4O3, the triazole ring makes dihedral angles of 50.27 (6) and 82.78 (7)° with the quinoline ring system and the dichloro-substituted benzene ring. The dihedral angle between the quinoline and dichloro-substituted benzene rings is 38.17 (4)°. In the crystal, mol­ecules are linked via C—H⋯N, C—H⋯F and C—H⋯O hydrogen bonds into a three-dimensional network. The crystal is further consolidated by C—H⋯π contacts to the triazole ring and inversion-related π–π inter­actions between the benzene and pyridine rings of quinoline systems [centroid–centroid distance = 3.7037 (7) Å].

Highlights

  • In the title compound, C23H17Cl2F3N4O3, the triazole ring makes dihedral angles of 50.27 (6) and 82.78 (7) with the quinoline ring system and the dichloro-substituted benzene ring

  • Molecules are linked via C—H N, C—H F and C—H O

  • The crystal is further consolidated by C—H contacts to the triazole ring and inversion-related – interactions between the benzene and pyridine rings of quinoline systems [centroid

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Summary

Structure Reports

USM, Penang, Malaysia, bDepartment of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, PO Box 2457, Riyadh 11451, Saudi Arabia, c. Medicinal Chemistry Laboratory, Department of Chemistry, National Institute of Technology–Karnataka, Surathkal, Mangalore 575 025, India, and dDepartment of Chemical and Environmental Engineering, Faculty of Engineering, Universiti Putra. C23H17Cl2F3N4O3, the triazole ring makes dihedral angles of 50.27 (6) and 82.78 (7) with the quinoline ring system and the dichloro-substituted benzene ring. The dihedral angle between the quinoline and dichlorosubstituted benzene rings is 38.17 (4). Molecules are linked via C—H N, C—H F and C—H O hydrogen bonds into a three-dimensional network. The crystal is further consolidated by C—H contacts to the triazole ring and inversion-related – interactions between the benzene and pyridine rings of quinoline systems [centroid–.

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