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Mechanistic Insight into the Dehydro-Diels-Alder Reaction of Styrene-Ynes

机译:苯乙烯-Ynes脱氢-Diels-Alder反应的机理分析

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The Diels-Alder reaction represents one of the most thoroughly studied and well-understood synthetic transformations for the assembly of six-membered rings. Although intramolecular dehydro-Diels-Alder (IMDDA) reactions have previously been employed for the preparation of naphthalene and dihydronaphthalene substrates, low yields and product mixtures have reduced the impact and scope of this reaction. Through the mechanistic studies described within, we have confirmed that the thermal IMDDA reaction of styrene-ynes produces a naphthalene product via loss of hydrogen gas from the initially formed cycloadduct, a tetraenyl intermediate. Alternatively, the dihydronaphthalene product is afforded from the same tetraenyl intermediate via a radical isomerization process. Moreover, we have identified conditions that can be used to achieve efficient, high-yielding, and selective IMDDA reactions of styrene-ynes to form either naphthalene or dihydronaphthalene products. The operational simplicity and retrosynthetic orthogonality of this method for the preparation of naphthalenes and dihydronaphthalenes makes this transformation appealing for the synthesis of medicinal and material targets. The mechanistic studies within may impact the development of other thermal transformations.
机译:Diels-Alder反应代表了六元环组装过程中研究最深入,理解最充分的合成转化之一。尽管分子内脱氢-Diels-Alder(IMDDA)反应以前已用于制备萘和二氢萘底物,但低收率和产物混合物降低了该反应的影响和范围。通过其中描述的机理研究,我们已经确认,苯乙烯-炔烃的热IMDDA反应会通过从最初形成的环加合物(四烯基中间体)中损失氢气而生成萘产品。或者,通过自由基异构化方法由相同的四烯基中间体提供二氢萘产物。此外,我们已经确定了可用于实现苯乙烯炔烃高效,高产率和选择性IMDDA反应以形成萘或二氢萘产物的条件。该方法用于制备萘和二氢萘的操作简便性和逆合成正交性使这种转化吸引了药物和材料靶标的合成。内部的力学研究可能会影响其他热转化的发展。

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