Crystal Structure of Diisopropylammonium Hydrogen Maleate

Dame Seye, Assane Touré, M. Lo, C. Diop, L. Diop,, D. Geiger
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引用次数: 1

Abstract

Use of salts and co-crystals of active pharmaceutical ingredients (APIs) as a method for tuning their delivery and activity is an area of growing interest. Modifying API properties such as solubility by finding new salts that employ similar hydrogen-bonding have been successful. In an effort to further study the hydrogen-bonding patterns of the maleate ion with other diisopropylammonium we report here the synthesis and diisopropylammonium maleate. The salt was isolated from reaction between diisopropylamine and maleic acid in methanol. The results of elementary analyzes (CHN) showed the presence of the nitrogen atom of diisopropylamine, carbon atoms and hydrogen. The IR spectrum of diisopropylammonium hydrogen maleate, showed the presence of two intense bands due to the vibrations of symmetricand anti-symmetric valence of the carboxylate group and a wide absorption due to the NH2 groups of the cation. Those which has been confirmed by crystallography. The asymmetric unit contains one diisopropylammonium cation, iPr2NH2+ and one hydrogen maleate anion. In the structure, anions which present an inner O-H…O hydrogen bond are linked to cations through N-H…O hydrogen bonds leading to infinite chains. Chains are connected to their neighbours through weak C-H…O hydrogen bonds affording a layer. The study of the interactions of diisopropylammonium hydrogen menaleate, by the presence of hydrogen bonds leading to supramolecular architectures has shown the possibility of its use in Active Pharmaceutical Ingredients (API).
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马来酸氢二异丙铵的晶体结构
使用活性药物成分(api)的盐和共晶作为调整其递送和活性的方法是一个越来越受关注的领域。通过寻找采用类似氢键的新盐来改变原料药的性质,如溶解度,已经取得了成功。为了进一步研究马来酸二异丙基铵与马来酸二异丙基铵的氢键模式,本文报道了马来酸二异丙基铵的合成。该盐是由二异丙胺和马来酸在甲醇中反应分离得到的。元素分析结果表明,二异丙胺中存在氮原子、碳原子和氢原子。马来酸氢二异丙基铵的红外光谱显示,由于羧酸基的对称和反对称价的振动,存在两个强波段,由于阳离子的NH2基团,存在一个宽吸收。那些已经被晶体学证实的。不对称单元包含一个二异丙基铵阳离子iPr2NH2+和一个马来酸氢阴离子。在该结构中,阴离子内部存在一个O- h…O氢键,通过N-H…O氢键与阳离子相连,形成无限链。链通过弱的C-H…O氢键与相邻链相连,形成一层。通过氢键形成的超分子结构,研究了menal酸氢二异丙铵的相互作用,显示了其在活性药物成分(API)中的应用可能性。
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