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A Two-Step Protocol for Umpolung Functionalization of Ketones Via Enolonium Species
Published on: August 16, 2018
A second monoclinic modification of phenyl quinoxalin-2-yl ether
Zanariah Abdullah1, Seik Weng Ng
1Department of Chemistry, University of Malaya, 50603 Kuala Lumpur, Malaysia.
Summary
The molecular structure of C(14)H(10)N(2)O features two aromatic systems with a significant dihedral angle. This specific spatial arrangement influences its chemical properties and potential applications.
Area of Science:
- Crystallography
- Organic Chemistry
- Materials Science
Background:
- Understanding the three-dimensional structure of organic molecules is crucial for predicting their properties.
- Aromatic systems play a key role in the electronic and physical characteristics of compounds.
Purpose of the Study:
- To determine the precise molecular geometry of the title compound, C(14)H(10)N(2)O.
- To analyze the spatial relationship between the two aromatic systems within the molecule.
Main Methods:
- Single-crystal X-ray diffraction analysis was employed to elucidate the crystal structure.
- Crystallographic data were collected and refined to obtain precise atomic coordinates.
Main Results:
- The study revealed a dihedral angle of 77.9° between the two aromatic systems.
- The C-O-C inter-ring bond angle was determined to be 117.6°.
Conclusions:
- The determined molecular geometry, particularly the dihedral angle, provides critical insights into the compound's conformation.
- This structural information is essential for further research into the compound's reactivity and potential applications.
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