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Crystal structures of tolfenamic acid polymorphic forms I and II with precise hydrogen-atom positions for nuclear magnetic resonance studies.


ABSTRACT: The structures of tolfenamic acid [TFA; 2-(3-chloro-2-methyl-anilino)benzoic acid, C14H12ClNO2] polymorph forms I and II have been redetermined [compare Andersen et al. (1989 ?). J. Chem. Soc., Perkin Trans. 2, pp. 1443-1447] with improved precision using high-resolution X-ray diffraction data and Hirshfield atom refinement in order to better define both hydrogen-atom locations and their associated bond lengths. Covalent bond lengths to hydrogen were found to be significantly longer throughout both structures, especially for the anilino H atom, which is involved in an important intra-molecular N-H?O hydrogen bond to the carb-oxy-lic acid group. This hydrogen bond is shown to clearly perturb the electron density around both oxygen atoms in the latter group. The extended structures of both polymorphs feature carb-oxy-lic acid inversion dimers. These structures provide an improved foundation for nuclear magnetic resonance studies in both solution and the solid state.

SUBMITTER: Blade H 

PROVIDER: S-EPMC7472768 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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Crystal structures of tolfenamic acid polymorphic forms I and II with precise hydrogen-atom positions for nuclear magnetic resonance studies.

Blade Helen H   Blundell Charles D CD   Vitorica-Yrezabal Iñigo J IJ  

Acta crystallographica. Section E, Crystallographic communications 20200811 Pt 9


The structures of tolfenamic acid [TFA; 2-(3-chloro-2-methyl-anilino)benzoic acid, C<sub>14</sub>H<sub>12</sub>ClNO<sub>2</sub>] polymorph forms I and II have been redetermined [compare Andersen <i>et al.</i> (1989 ▸). <i>J. Chem. Soc., Perkin Trans. 2</i>, pp. 1443-1447] with improved precision using high-resolution X-ray diffraction data and Hirshfield atom refinement in order to better define both hydrogen-atom locations and their associated bond lengths. Covalent bond lengths to hydrogen wer  ...[more]

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