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Role of Reversible Dimerization in Reactions of Amphoteric Aziridine Aldehydes

机译:可逆二聚作用在两性氮丙啶二醛反应中的作用

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摘要

Unprotected aziridine aldehydes belong to the amphoteric class of molecules by virtue of their dual nucleophilicity/electrophilicity. The dimeric nature of these molecules, brought together by a weak and reversible aminal “connection”, was found to be an important element of reactivity control. We present evidence that reversible dimer dissociation is instrumental in aziridine aldehyde transformations. We anticipate further developments that will unveil other synthetic consequences of remote control of selectivity through forging reversible covalent interactions.
机译:由于它们的双重亲核性/亲电子性,未保护的氮丙啶醛属于分子的两性类别。发现这些分子的二聚体性质是通过弱的和可逆的氨基“连接”连接在一起,是控制反应性的重要元素。我们目前的证据,可逆的二聚体解离在氮丙啶醛转化中起作用。我们预计将通过伪造可逆共价键相互作用揭示选择性远程控制的其他综合后果。

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