Abstract

The title compound, C19H21N3O, was isolated from the fruits of Evodia rutaecarpa. The indole and benzene rings are both essentially planar with mean derivations of 0.0094 (4) Å and 0.0077 (3) Å, respectively. The dihedral angle between these two planes is 78.24 (9)°. The amide carbonyl plane is roughly parallel to the indole ring with a dihedral angle of 7.0 (2)°, but makes a dihedral angle of 82.9 (3)° with the benzene ring. Inter­molecular N—H⋯O hydrogen-bonding inter­actions involving the amino and carbonyl groups give rise to a three-dimensional network.

Highlights

  • Guangdong Province Key Laboratory of Pharmacodynamic Constituents of Traditional Chinese Medicine and New Drugs Research, Institute of Traditional

  • The indole and benzene rings are both essentially planar with mean derivations of 0.0094 (4) Å and

  • The amide carbonyl plane is roughly parallel to the indole ring with a dihedral angle of 7.0 (2), but makes a dihedral angle of 82.9 (3) with the benzene ring

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Summary

Data collection

Guangdong Province Key Laboratory of Pharmacodynamic Constituents of Traditional Chinese Medicine and New Drugs Research, Institute of Traditional. Chinese Medicine and Natural Products, Jinan University, Guangzhou 510632, People’s Republic of China. R factor = 0.049; wR factor = 0.146; data-to-parameter ratio = 16.2. The title compound, C19H21N3O, was isolated from the fruits of Evodia rutaecarpa. The indole and benzene rings are both essentially planar with mean derivations of 0.0094 (4) Å and. The dihedral angle between these two planes is 78.24 (9). The amide carbonyl plane is roughly parallel to the indole ring with a dihedral angle of 7.0 (2) , but makes a dihedral angle of 82.9 (3) with the benzene ring. Intermolecular N—H O hydrogen-bonding interactions involving the amino and carbonyl groups give rise to a three-dimensional network

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This work was supported by grants from the New Century
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