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首页> 外文期刊>Journal of Molecular Structure >Experimental and theoretical structure characterization of two isoniazid derivatives: 2,4-difluoro-N '-isonicotinoylbenzohydrazide and 2,4-dichloro-N '-isonicotinoylbenzohydrazide hydrochloride
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Experimental and theoretical structure characterization of two isoniazid derivatives: 2,4-difluoro-N '-isonicotinoylbenzohydrazide and 2,4-dichloro-N '-isonicotinoylbenzohydrazide hydrochloride

机译:两种异烟肼衍生物的实验和理论结构表征:2,4-二氟-N'-异烟酰苯甲酰肼和2,4-二氯-N'-异烟酰苯甲酰肼盐酸盐

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摘要

An X-ray and a theoretical study of the structure of the isoniazid derivatives, 2,4-difluoro-N'-isonicotinoylbenzohydrazide, 3, and 2,4-dichloro-N'-isonicotinoylbenzohydrazide hydrochloride, [4H(+), Cl-, 2(H2O)], are reported. Quantum chemical calculations as well as conformational analysis are presented with the isolated cations [3H(+)] and [4H(+)], where the former was protonated in silico to allow direct comparison of results. Supermolecule calculations were also carried out with the asymmetric unit of [4H(+), Cl-, 2(H2O)], which is comprised of two independent cations (4H(+)), two chloride ions and four water molecules. Our results indicate that the crystal structures, although clearly representing accessible conformations, are highly distorted in comparison to the predicted lower energy conformers in the gas-phase. These distortions are most probably imposed by polar and electrostatic interactions within the crystal packing. In general, the calculated potential energy surfaces (PES) for both isoniazid derivatives are fairly flat, a feature confirmed by the low energetic difference calculated for several conformers corresponding to local minima in PES. Noteworthy, the fluorinated compound [3H(+)] shows an important additional energy barrier for rotation around the bond connecting the halogenated ring to the proximate carbonyl due to a strong internal hydrogen bond involving the fluorine atom. (c) 2005 Elsevier B.V. All fights reserved.
机译:X射线和异烟肼衍生物,2,4-二氟-N'-异烟酰苯甲酰肼,3和2,4-二氯-N'-异烟酰苯甲酰肼盐酸盐,[4H(+),Cl- ,2(H2O)]。分离出的阳离子[3H(+)]和[4H(+)]给出了量子化学计算和构象分析,其中前者在计算机上质子化,可以直接比较结果。还使用[4H(+),Cl-,2(H2O)]的不对称单元进行了超分子计算,该单元由两个独立的阳离子(4H(+)),两个氯离子和四个水分子组成。我们的结果表明,尽管晶体结构清楚地代表了可及的构象,但与气相中预测的较低能构象相比,其畸变程度很高。这些变形很可能是由于晶体堆积中的极性和静电相互作用而引起的。通常,两种异烟肼衍生物的计算势能面(PES)都相当平坦,这一特征已由针对与PES中局部最小值相对应的几个构象异构体计算出的低能差证实。值得注意的是,由于涉及氟原子的强内部氢键,氟化化合物[3H(+)]显示出一个重要的附加能垒,用于绕将卤代环连接至邻近羰基的键旋转。 (c)2005 Elsevier B.V.版权所有。

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