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This study reveals the molecular structure of C(10)H(13)N(3)O(2)S, highlighting intramolecular hydrogen bonds stabilizing its conformation. Molecules form zigzag chains through intermolecular hydrogen bonding.
Area of Science:
- Crystallography
- Molecular Chemistry
Background:
- Understanding molecular conformation is crucial in chemistry.
- Hydrogen bonding plays a key role in crystal packing and material properties.
Purpose of the Study:
- To determine the crystal structure and molecular conformation of C(10)H(13)N(3)O(2)S.
- To investigate the role of hydrogen bonding in the compound's solid-state structure.
Main Methods:
- Single-crystal X-ray diffraction analysis was employed.
- Structural analysis focused on identifying hydrogen bond interactions.
Main Results:
- The molecular conformation is stabilized by an intramolecular O-H⋯N hydrogen bond.
- Adjacent molecules are interconnected via intermolecular O-H⋯O hydrogen bonds, forming a distinct zigzag chain.
Conclusions:
- The crystal structure of C(10)H(13)N(3)O(2)S is characterized by specific intramolecular and intermolecular hydrogen bonding patterns.
- These interactions dictate the compound's solid-state architecture, leading to a zigzag chain formation.
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