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首页> 外文期刊>Journal of pharmaceutical sciences. >Molecular complexes of alprazolam with carboxylic acids, boric acid, boronic acids, and phenols. Evaluation of supramolecular heterosynthons mediated by a triazole ring.
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Molecular complexes of alprazolam with carboxylic acids, boric acid, boronic acids, and phenols. Evaluation of supramolecular heterosynthons mediated by a triazole ring.

机译:阿普唑仑与羧酸,硼酸,硼酸和酚的分子复合物。评价三唑环介导的超分子杂合子。

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摘要

A series of molecular complexes, both co-crystals and salts, of a triazole drug-alprazolam-with carboxylic acids, boric acid, boronic acids, and phenols have been analyzed with respect to heterosynthons present in the crystal structures. In all cases, the triazole ring behaves as an efficient hydrogen bond acceptor with the acidic coformers. The hydrogen bond patterns exhibited with aromatic carboxylic acids were found to depend on the nature and position of the substituents. Being a strong acid, 2,6-dihydroxybenzoic acid forms a salt with alprazolam. With aliphatic dicarboxylic acids alprazolam forms hydrates and the water molecules play a central role in synthon formation and crystal packing. The triazole ring makes two distinct heterosynthons in the molecular complex with boric acid. Boronic acids and phenols form consistent hydrogen bond patterns, and these are seemingly independent of the substitutional effects. Boronic acids form noncentrosymmetric cyclic synthons, while phenols form O--H...N hydrogen bonds with the triazole ring.
机译:关于存在于晶体结构中的杂合子,已经分析了三唑药物阿普唑仑与羧酸,硼酸,硼酸和酚的一系列分子配合物,包括共晶体和盐。在所有情况下,三唑环都可作为酸性共形成剂的有效氢键受体。发现芳族羧酸表现出的氢键模式取决于取代基的性质和位置。 2,6-二羟基苯甲酸为强酸,与阿普唑仑形成盐。阿普唑仑与脂肪族二羧酸形成水合物,水分子在合成子的形成和晶体堆积中起着核心作用。三唑环在与硼酸的分子复合物中形成两个不同的杂合子。硼酸和苯酚形成一致的氢键模式,这些似乎与取代作用无关。硼酸形成非中心对称的环状合成子,而酚则与三唑环形成O-H ... N氢键。

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