重温施陶丁格和鲁齐卡的改变的除虫菊酯:从除虫菊酯 I、辛内酯 I 和茉莉酮 I 衍生的环戊二烯酮二聚体

IF 1 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY
Oliver E. Hutt, Jamie A. Freemont, Stella Kyi, Stuart W. Littler, Ross P. McGeary, Peter J. Duggan, John Tsanaktsidis, Helen F. Cole, Maurice G. Kerr, Elizabeth H. Krenske, John H. Ryan
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引用次数: 0

摘要

除虫菊素 I、西尼林 I 和茉莉素 I 与氢氧化钠在乙醇中的反应生成了两种各自比例约为 1:1 的环戊二烯酮二聚体,并以良好的收率分离出来。结合一维和二维核磁共振光谱研究,可以确定二聚体的结构和立体化学性质。二聚物是通过环戊二烯酮中取代程度较低的烯烃的环加成反应以及通过区域异构内生过渡态形成的。密度泛函理论的计算结果与实验结果一致,显示了由非模态过渡态形成的产物。其中一种转变态产生了两种初始产物,稳定性较差的产物很容易转化为另一种更稳定的实验观察到的产物。这些研究澄清了 Staudinger 和 Ruzicka 于 1924 年报告的改变后的除虫菊酯酮的结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Revisiting Staudinger and Ruzicka’s altered pyrethrolone: the cyclopentadienone dimers derived from pyrethrin I, cinerin I and jasmolin I

The reactions of pyrethrin I, cinerin I and jasmolin I with sodium hydroxide in ethanol afforded an approximately 1:1 ratio of two respective cyclopentadienone dimers, isolated in good yield. A combination of one-dimensional and two-dimensional NMR spectroscopic studies allowed determination of the structure and stereochemistry of the dimers. The dimers are formed by cycloaddition reactions of the less substituted alkene of the cyclopentadienone, and by regioisomeric endo transition states. Density functional theory calculations were in accord with the experimental findings showing the products formed by ambimodal transition states. One such transition state led to two initial products with the less stable product undergoing facile conversion to the other more stable, experimentally observed product. These studies clarify the structures of the altered pyrethrolone reported by Staudinger and Ruzicka in 1924.

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来源期刊
Australian Journal of Chemistry
Australian Journal of Chemistry 化学-化学综合
CiteScore
2.50
自引率
0.00%
发文量
65
审稿时长
1.3 months
期刊介绍: Australian Journal of Chemistry - an International Journal for Chemical Science publishes research papers from all fields of chemical science. Papers that are multidisciplinary or address new or emerging areas of chemistry are particularly encouraged. Thus, the scope is dynamic. It includes (but is not limited to) synthesis, structure, new materials, macromolecules and polymers, supramolecular chemistry, analytical and environmental chemistry, natural products, biological and medicinal chemistry, nanotechnology, and surface chemistry. Australian Journal of Chemistry is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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