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皮洛蒂酸及其酰肼类似物:密度泛函理论和振动光谱对构象稳定性和化学反应性的研究。

Piloty's acid and its hydrazide analogue: Insights from the density functional theory and vibrational spectroscopy on the conformational stability and chemical reactivity.

机构信息

Department of Chemistry, King Fahd University of Peteroleum & Minerals, Dhahran 31261, Saudi Arabia.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2021 Mar 15;249:119317. doi: 10.1016/j.saa.2020.119317. Epub 2020 Dec 15.

Abstract

N-hydroxybenzenesulfonamide (commonly known as Piloty's acid) is considered a major source for nitroxyl (HNO) species which has potential biological and medicinal applications. In the present study, the conformational preferences and chemical reactivity of Piloty's acid (PA) and its hydrazide analogue (benzenesulfonylhydrazide, BSH) were studied using spectroscopic and computational tools. Six stable conformations of each molecule were theoretically identified, and their structures were fully optimized at the DFT-B3LYP and MP2 levels. Both molecules in their most stable forms adopt the anti configuration with the NH bond of the secondary amine pointing away from the terminal hydroxyl and amine moieties in the acid and hydrazide molecules, respectively. Three stable gauche states facilitated by weak intramolecular interactions of the SO⋯HO and SO⋯HN types arise due to the internal rotation about the SN linkage. Reliable assignments of the vibrational modes and the calculated reaction coordinates support a two-step mechanistic pathway of the Piloty's acid dissociation leading to the production of the nitroxyl (HNO) intermediate with moderate transition state barriers. Frontier molecular orbitals distributions, molecular electrostatic potential maps and condensed Fukui functions analysis of the molecules were employed to elucidate the agility of PA to dissociate to produce HNO and the absence of such a dissociation of BSH that would produce diazene (NH).

摘要

N-羟基苯磺酰胺(通常称为皮氏酸)被认为是亚硝酰基(HNO)物种的主要来源,具有潜在的生物学和医学应用。在本研究中,使用光谱和计算工具研究了皮氏酸(PA)及其酰肼类似物(苯磺酰肼,BSH)的构象偏好和化学反应性。理论上确定了每个分子的六个稳定构象,并在 DFT-B3LYP 和 MP2 水平上对其结构进行了完全优化。在其最稳定的形式下,两种分子都采用反式构型,仲胺的 NH 键指向酸和酰肼分子中末端羟基和胺部分的相反方向。由于 SN 键的内部旋转,三种稳定的 gauche 态由于 SO⋯HO 和 SO⋯HN 类型的弱分子内相互作用而出现。可靠的振动模式分配和计算的反应坐标支持皮氏酸离解的两步机制途径,导致产生具有中等过渡态势垒的亚硝酰基(HNO)中间体。对分子的前线分子轨道分布、分子静电势图和凝聚 Fukui 函数分析表明,PA 具有离解产生 HNO 的敏捷性,而 BSH 则没有这种离解产生二氮烯(NH)的能力。

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