Molecular insights into enantioselective separation of λ-cyhalothrin: a theoretical investigation

IF 2.1 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Structural Chemistry Pub Date : 2024-06-24 DOI:10.1007/s11224-024-02356-8
Vitória S. Reis, Luciana Guimarães, Clebio S. Nascimento
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Abstract

λ-Cyhalothrin (CLT), a widely employed pyrethroid insecticide for pest control, is typically marketed as a racemate, akin to many other pesticides. It has been recognized that optical isomers may exhibit distinct biological activity and toxicity, prompting the burgeoning demand for more efficient separation methods to isolate these isomers. In this study, we employed a theoretical approach to unravel the chiral recognition mechanisms governing the interaction between a polysaccharide-derived stationary phase and the λ-cyhalothrin. Density functional theory calculations were utilized to glean structural and energetic information, enabling the elucidation of the observed chiral discrimination and enantiomeric elution order from prior HPLC experiments. Our analysis pinpointed the critical role of hydrogen bonding and π-π stacking interactions in dictating the relative stability of the diastereomeric complexes formed between the λ-cyhalothrin enantiomers and the chiral selector.

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λ-氰戊菊酯对映体选择性分离的分子见解:一项理论研究
λ-氯氰菊酯(CLT)是一种广泛用于害虫控制的拟除虫菊酯类杀虫剂,与许多其他杀虫剂一样,通常以外消旋体的形式销售。人们已经认识到,光学异构体可能会表现出不同的生物活性和毒性,这促使对更高效分离这些异构体的方法的需求急剧增长。在本研究中,我们采用了一种理论方法来揭示支配多糖衍生固定相与 λ-氯菊酯之间相互作用的手性识别机制。我们利用密度泛函理论计算来收集结构和能量信息,从而阐明了之前高效液相色谱实验中观察到的手性识别和对映体洗脱顺序。我们的分析精确地指出了氢键和 π-π 堆积相互作用在决定 λ-氟氯氰菊酯对映体与手性选择剂之间形成的非对映复合物的相对稳定性方面的关键作用。
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来源期刊
Structural Chemistry
Structural Chemistry 化学-化学综合
CiteScore
3.80
自引率
11.80%
发文量
227
审稿时长
3.7 months
期刊介绍: Structural Chemistry is an international forum for the publication of peer-reviewed original research papers that cover the condensed and gaseous states of matter and involve numerous techniques for the determination of structure and energetics, their results, and the conclusions derived from these studies. The journal overcomes the unnatural separation in the current literature among the areas of structure determination, energetics, and applications, as well as builds a bridge to other chemical disciplines. Ist comprehensive coverage encompasses broad discussion of results, observation of relationships among various properties, and the description and application of structure and energy information in all domains of chemistry. We welcome the broadest range of accounts of research in structural chemistry involving the discussion of methodologies and structures,experimental, theoretical, and computational, and their combinations. We encourage discussions of structural information collected for their chemicaland biological significance.
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