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Synthesis of Cr(III) Salen Complexes as Supramolecular Catalytic Systems for Ring-Opening Reactions of Epoxides

机译:CR(III)盐络合物的合成作为环氧化物环氧化反应的超分子催化系统

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摘要

The synthesis of two conformationally restricted Cr(III) salen complexes, 2 and 3, is described. Together, they constitute a supramolecular hydrogen-bonding catalytic system for the recently reported asymmetric ring-opening reactions of epoxides by a dynamic supramolecular catalyst. The synthesis involves state-of-the art transformations in frontline synthetic chemistry applied to heterocyclic chemistry. Hence, palladium-catalyzed reactions were employed, including carbonylative annelation and Suzuki cross-coupling reactions, for the formation of one of the heterocyclic rings (quinolone) and the functionalization of the formed rings. For the construction of the second heterocyclic ring (isoquinolone), a Curtius rearrangement was employed. The corresponding salen ligands were then prepared by Schiff-base reactions, yielding the final complexes after metal insertion. For reference purposes the less conformationally restricted Cr(III) complexes 4 and 5 were also synthesized.
机译:描述了两个构型限制的CR(III)盐络合物2和3的合成。 它们共同构成了一个超分子氢键催化系统,用于通过动态超分子催化剂对环氧化物的最近报道的不对称环环反应。 该合成涉及应用于杂环化学的前线合成化学中的最新转化。 因此,采用了钯催化的反应,包括羰基网和铃木交叉偶联反应,用于形成杂环环之一(喹诺酮)和形成环的功能化。 为了构建第二个杂环环(等喹诺酮),采用了Curtius重排。 然后通过Schiff基碱反应制备相应的盐配体,在金属插入后产生最终复合物。 出于参考目的,还合成了较少构型限制的CR(III)复合物4和5。

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