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首页> 外文期刊>Angewandte Chemie >Carbonyl-Olefin Cross-Metathesis Through a Visible-Light-Induced 1,3-Diol Formation and Fragmentation Sequence
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Carbonyl-Olefin Cross-Metathesis Through a Visible-Light-Induced 1,3-Diol Formation and Fragmentation Sequence

机译:羰基烯烃通过可见光诱导的1,3-二醇形成和碎裂序列交叉复分解

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摘要

A visible-light-mediated approach to carbonyl-olefin cross-metathesis is described. Photoinduced hole catalysis was used to promote the formation of 1,3-diols from aldehydes and styrenes, which were then readily fragmented under acidic conditions to form the cross-metathesis products. The use of 1,3-diols as intermediates, rather than the energetically more demanding oxetanes, provides a new, orthogonal mechanistic strategy for carbonyl-olefin cross-metathesis. Furthermore, this approach does not require any metals, ligands, or additives, and provides the products with high levels of Eselectivity. A mechanistic rationale is provided and supported by both theoretical calculations and experiments. Additionally, a practical synthesis of a new acridinium-based photocatalyst, including full characterization, is presented.
机译:描述了一种可见光介导的羰基烯烃交叉复位的方法。 光抑制孔催化用于促进来自醛和苯乙烯的1,3-二醇的形成,然后在酸性条件下容易地裂片以形成交叉复位产物。 使用1,3-二醇作为中间体,而不是大力更高的氧扫描,为羰基烯烃交叉复分解提供了一种新的正交机械战略。 此外,这种方法不需要任何金属,配体或添加剂,并提供具有高水平反应性的产品。 通过理论计算和实验提供机械理论和支持。 另外,提出了新的基于吖啶基光催化剂的实际合成,包括完全表征。

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