Intramolecular hydrogen bond, hirshfeld analysis, aim; dft studies of pyran‐2,4‐dione derivatives

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Abstract

Intra and intermolecular interactions found in the developed crystals of the synthesized py‐ron‐2,4‐dione derivatives play crucial rules in the molecular conformations and crystal stabili-ties, respectively. In this regard, Hirshfeld calculations were used to quantitatively analyze the different intermolecular interactions in the crystal structures of some functionalized py‐ran‐2,4‐dione derivatives. The X‐ray structure of pyran‐2,4‐dione derivative namely (3E,3ʹE)‐3,3ʹ‐((ethane‐1,2‐ diylbis(azanediyl))bis(phenylmethanylylidene))bis(6‐phenyl‐2H‐pyran‐2,4(3H)‐dione) was deter-mined. It crystallized in the monoclinic crystal system and C2/c space group with unit cell parame-ters: a = 14.0869(4) Å, b = 20.9041(5) Å, c = 10.1444(2) Å and β = 99.687(2)°. Generally, the H…H, H…C, O…H and C…C contacts are the most important interactions in the molecular packing of the studied pyran‐2,4‐diones. The molecular structure of these compounds is stabilized by intramolecular O…H hydrogen bond. The nature and strength of the O…H hy‐drogen bonds were analyzed using atoms in molecules calculations. In all compounds, the O…H hydrogen bond belongs to closed‐shell interactions where the interaction energies are higher at the optimized geometry than the X‐ray one due to the shortening in the A…H distance as a con‐sequence of the geometry opti-mization. These compounds have polar characters with different charged regions which explored using molecular electrostatic potential map. Their natural charges, reactivity descriptors and NMR chemical shifts were computed, discussed and com‐pared.

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Boraei, A. T. A., Haukka, M., Sarhan, A. A. M., Soliman, S. M., & Barakat, A. (2021). Intramolecular hydrogen bond, hirshfeld analysis, aim; dft studies of pyran‐2,4‐dione derivatives. Crystals, 11(8). https://doi.org/10.3390/cryst11080896

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