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In Depth Analysis of Chiroptical Properties of Enones Derived from Abietic Acid

机译:深入分析硫酸源源性肿瘤性能的深度分析

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摘要

With the use of inexpensive commercially available abietic acid, a whole series of abietane enones were prepared in high yields. The structures of all the products obtained were determined by comprehensive spectroscopic analysis with particular emphasis on the use of advanced NMR techniques, comparison with previously reported data and, where possible, by single crystal X-ray diffraction. However, in cases where X-ray crystallography was not applicable or compounds tested were unstable, a final stereochemical assignment could be inferred only by electronic circular dichroism (ECD) supported by vibrational circular dichroism to increase credibility. To reveal the relationship between structure and chiroptical properties, we used combined experimental and theoretical analysis of geometries, structural parameters, and chiroptical properties of all enones synthesized. A thorough analysis of their conformational flexibility by examining the effect of solvent and temperature on the ECD spectra was also used to achieve desired objectives. As a result, the impact of substituents adjacent to the enone chromophore on the conformation was determined by demonstrating that even slight changes in the position of hydroxyl and isopropyl groups attached to carbon C13 may substantially affect ECD curves’ pattern, leading in some cases to Cotton effects sign reversal.
机译:随着使用廉价的市售支原体,生产全系列的一系列高产胶。通过综合光谱分析确定所得所有产品的结构,特别强调使用先进的NMR技术,与先前报告的数据进行比较,并且在可能的情况下,通过单晶X射线衍射在尽可能发生的情况下。然而,在不适用的X射线晶体学或测试的化合物不稳定的情况下,可以仅通过振动圆形二中间的电子圆形二中间(ECD)来推断出最终立体化学分配,以提高可信度。为了揭示结构和毛细光学性质之间的关系,我们使用了合成的所有蜗氧的几何形状,结构参数和细胞光神经性能的组合实验和理论分析。通过检查溶剂和温度对ECD光谱的影响来彻底分析它们的构象灵活性,也用于达到所需的目标。结果,通过证明附着于碳C13的羟基和异丙基位置的甚至略微变化可能会影响ECD曲线的模式,在某些情况下导致诸如棉花的甲基和异丙基的位置的微小变化来确定依次的构象的影响。效果签署逆转。

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  • 来源
    《The Journal of Organic Chemistry》 |2018年第7期|共15页
  • 作者单位

    Institute of Organic Chemistry Polish Academy of Sciences Kasprzaka 44/52 01-224 Warsaw Poland;

    Institute of Organic Chemistry Polish Academy of Sciences Kasprzaka 44/52 01-224 Warsaw Poland;

    Institute of Organic Chemistry Polish Academy of Sciences Kasprzaka 44/52 01-224 Warsaw Poland;

    Institute of Physical Chemistry Polish Academy of Sciences Kasprzaka 44/52 01-224 Warsaw Poland;

    Centre of Molecular and Macromolecular Studies Polish Academy of Sciences Sienkiewicza 112 90-363 Lodz Poland;

    Centre of Molecular and Macromolecular Studies Polish Academy of Sciences Sienkiewicza 112 90-363 Lodz Poland;

    Institute of Organic Chemistry Polish Academy of Sciences Kasprzaka 44/52 01-224 Warsaw Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
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