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1,5-Bis(2-chloro-benzyl-idene)carbonohydrazide.
This study details the crystal structure of a molecule with the formula C(15)H(12)Cl(2)N(4)O. It reveals specific benzene ring inclination and intermolecular hydrogen bonding that forms crystal chains.
Area of Science:
- Crystallography
- Organic Chemistry
- Molecular Structure
Background:
- Understanding molecular interactions is crucial in crystal engineering.
- The specific arrangement of molecules dictates material properties.
- Detailed structural analysis provides insights into intermolecular forces.
Purpose of the Study:
- To elucidate the crystal structure of the molecule C(15)H(12)Cl(2)N(4)O.
- To investigate the spatial arrangement and intermolecular interactions within the crystal lattice.
- To characterize the dihedral angle between benzene rings and hydrogen bonding patterns.
Main Methods:
- Single-crystal X-ray diffraction was employed for structural determination.
- Crystallographic data was analyzed to determine bond lengths, angles, and torsion angles.
- Intermolecular interactions, including hydrogen bonds, were identified and analyzed.
Main Results:
- The molecule C(15)H(12)Cl(2)N(4)O was successfully crystallized and its structure solved.
- A dihedral angle of 14.5(2)° was measured between the two benzene rings.
- Intermolecular N-H⋯O hydrogen bonds were observed, linking molecules into chains along the [001] direction.
Conclusions:
- The crystal structure reveals a specific spatial arrangement of the molecule.
- Hydrogen bonding plays a significant role in the self-assembly of these molecules into extended chains.
- The findings contribute to the understanding of crystal packing and intermolecular forces in organic compounds.
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