首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Asymmetric Catalysis Special Feature Part I: Air-stable storable and highly efficient chiral zirconium catalysts for enantioselective Mannich-type aza Diels–Alder aldol and hetero Diels–Alder reactions
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Asymmetric Catalysis Special Feature Part I: Air-stable storable and highly efficient chiral zirconium catalysts for enantioselective Mannich-type aza Diels–Alder aldol and hetero Diels–Alder reactions

机译:不对称催化的特殊功能(第一部分):对映选择性曼尼希型氮杂Diels–AlderAldol和杂Diels–Alder反应的空气稳定可储存且高效的手性锆催化剂

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摘要

For the synthesis of optically active compounds, chiral catalysts have attracted much attention because large quantities of optically active molecules can be prepared from a small amount of a chiral source. However, many chiral catalysts are often unstable in air (oxygen) and/or in the presence of water. This is especially the case in chiral Lewis acid catalysis, because most Lewis acids are air- and moisture-sensitive. Therefore, many catalysts are prepared in situ in an appropriate solvent just before use, and they cannot be stored for extended periods. We have developed air-stable, storable, and highly efficient chiral zirconium Lewis acids. The catalysts promoted asymmetric Mannich-type, aza Diels–Alder, aldol, and hetero Diels–Alder reactions efficiently with high enantioselectivities. A key to stabilizing the catalysts is an appropriate combination of chiral zirconium Lewis acids with molecular sieves, and the zirconium–molecular sieves-combined catalysts can be stored for extended periods in air at room temperature without loss of activity. Moreover, it has been demonstrated that the catalysts can be recovered and reused.
机译:对于光学活性化合物的合成,手性催化剂引起了广泛的关注,因为可以从少量的手性来源制备大量的光学活性分子。但是,许多手性催化剂通常在空气(氧气)和/或水的存在下不稳定。在手性路易斯酸催化中尤其如此,因为大多数路易斯酸对空气和湿气敏感。因此,许多催化剂在即将使用之前就在适当的溶剂中就地制备,并且它们不能长期保存。我们开发了空气稳定,可储存和高效的手性锆路易斯酸。催化剂以高对映选择性有效地促进了不对称曼尼希型,氮杂Diels–Alder,Aldol和杂Diels–Alder反应。稳定催化剂的关键是手性锆路易斯酸与分子筛的适当组合,并且锆-分子筛组合的催化剂可以在室温下长时间保存在空气中而不会失去活性。此外,已经证明催化剂可以回收和再利用。

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