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首页> 外文期刊>The Journal of Organic Chemistry >Photocycloaddition of S,S-Dioxo-benzothiophene-2-methanol, Reactivity in the Solid State and in Solution: Mechanistic Studies and Diastereoselective Formation of Cyclobutyl Rings
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Photocycloaddition of S,S-Dioxo-benzothiophene-2-methanol, Reactivity in the Solid State and in Solution: Mechanistic Studies and Diastereoselective Formation of Cyclobutyl Rings

机译:S,S二氧 - 苯并噻吩-2-甲醇,固体反应性和溶液中的光电载入,溶液中的反应性:环丁基环的机械研究和非对映选择性形成

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摘要

The formation of cyclobutane rings is a promising strategy in the development of potential drugs and/or synthetic intermediates, typically challenging to obtain due to their constrained nature. In this work, the [2 + 2] photocycloaddition reaction of S,S-dioxobenzothiophene-2-methanol was explored in microcrystalline powders and its outcome was compared to that observed in solution. It was found that the molecular constraints inherited within the crystal lattice provide an optimal environment that leads to photodimer 4 as the major product in ca. 9.6:0.4 diastereomeric ratios with conversions >95%. The photoreaction was analyzed via X-ray, displaying a crystalline-to-amorphous transformation and showing that units of monomer 2 align to generate the corresponding dimer with a syn-head-to-tail regio- and diastereoselectivity. This result contrasted with that obtained in solution, where the diastereomeric ratio varied as a function of the excited state that is generated, to yield mixtures of dimers 4 and 5 (anti-head-to-tail), or exclusively 5 in the tripletsensitized photoreaction, in the presence of benzophenone. Density functional theory was used to elucidate a plausible detailed mechanism for the phototransformation, which aided in justifying the results that led to the corresponding dimers. X-ray crystallography allowed us to establish the stereochemical assignment of the obtained cyclobutyl rings. Thus, the use of solidstate or solution photochemistry can be used to gain control of diastereo- and regioselectivities in the formation of this important moiety.
机译:环丁烷环的形成是在潜在的药物和/或合成中间体的发展中的一种有希望的策略,通常是由于其受限制的性质而获得的挑战。在这项工作中,在微晶粉末中探讨了S,S二氧基噻吩-2-甲醇的[2 + 2]光电加入反应。将其结果与在溶液中观察到的结果进行了比较。结果发现,在晶格内遗传的分子约束提供了最佳环境,导致光电二极管4作为CA的主要产品。 9.6:0.4个非对映异构比转化率> 95%。通过X射线分析光射反应,显示结晶与无定形转变,并显示单体2的单位,以产生相应的二聚体,以同步到尾部测定和非对映选择性。该结果与溶液中获得的那个对比,其中非对映射率随着产生的激发状态而变化,得到二聚体4和5(抗头到尾)的混合物,或者在三均敏感的光反应中产生5个,在二苯甲酮的存在下。密度函数理论用于阐明光电转换的合理详细机制,其辅助导致相应二聚体的结果。 X射线晶体学允许我们建立所得环丁基环的立体化分配。因此,使用固体或溶液光化学可用于在形成这一重要部分的形成中获得对非对映的和区域选择性的控制。

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  • 来源
    《The Journal of Organic Chemistry 》 |2019年第15期| 共12页
  • 作者单位

    Univ Colorado Dept Chem Sci Bldg 1151 Arapahoe St Denver CO 80204 USA;

    Univ Colorado Dept Chem Sci Bldg 1151 Arapahoe St Denver CO 80204 USA;

    Univ Colorado Dept Chem Sci Bldg 1151 Arapahoe St Denver CO 80204 USA;

    Colorado State Univ Dept Chem Cent Instrument Facil C1D Chem Bldg 1872 Campus Delivery Ft Collins CO 80523 USA;

    Univ Colorado Dept Chem Sci Bldg 1151 Arapahoe St Denver CO 80204 USA;

    Univ Colorado Dept Chem Sci Bldg 1151 Arapahoe St Denver CO 80204 USA;

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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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