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RESEARCH PRODUCT

Synthesis and Characterizations of Novel Isatin-s-Triazine Hydrazone Derivatives : X-ray Structure, Hirshfeld Analysis and DFT Calculations

Hessa H. Al-rasheedSarah A. Al-khamisAssem BarakatAyman El-fahamMatti HaukkaSaied M. Soliman

subject

Inorganic Chemistryhydrazone derivatives<i>s</i>-triazines-triazinenon-covalent interactionsGeneral Chemical Engineeringorgaaninen kemiaGeneral Materials ScienceCondensed Matter PhysicsisatinDFTorgaaniset yhdisteetHirshfeld

description

A novel series of isatin-s-triazine hydrazone derivatives has been synthesized and reported herein. The synthetic methodology involved the reaction of s-triazine hydrazine precursors with isatin derivatives in the presence of CH3COOH as a catalyst and EtOH as solvent to afford the corresponding target products 6a-e in high yields and purities. The characterization data obtained from elemental analysis, FT-IR, NMR (1H- and 13C-) were in full agreement with the expected structures. Furthermore, an X-ray single crystal diffraction study of one of the target s-triazine hydrazone derivatives, 6c confirmed the structure of the desired compounds. It crystallized in the triclinic crystal system and P-1 space group with a = 10.3368(6) &Aring;, b = 11.9804(8) &Aring;, c = 12.7250(5) &Aring;, &alpha; = 100.904(4)&deg;, &beta; = 107.959(4)&deg; and &gamma; = 109.638(6)&deg;. The different non-covalent interactions which contributed in the molecular packing of 6c were analyzed using Hirshfeld analysis. The molecular packing of the organic part of the crystal structure showed important O&hellip;H (7.1%), C&hellip;H (16.4%), C&hellip;C (1.6%), H&hellip;H (34.8%), N&hellip;H (8.0%) and C&hellip;N (4.0%) interactions while for the crystal solvent, the O&hellip;H (21.3%), H&hellip;H (61.2%) and N&hellip;H (8.1%) contacts are the most significant. The studied compound 6c is polar and has a net dipole moment of 5.6072 Debye based on DFT study.

http://urn.fi/URN:NBN:fi:jyu-202302201808