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Asymmetric Pd-NHC*-catalyzed coupling reactions

机译:不对称Pd-NHC *催化的偶联反应

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摘要

Very high asymmetric inductions result in the paiiadium catalyzed intramolecular arylation of amides to give 3,3-disubstituted oxindoles and 3-spiro-oxindoles when new in-situ generated chiral non-racemic N-heterocyclic carbenes are employed. Structural studies show that conformational locking to avoid allylic strain is the key for understanding the role of the different elements in these ligands. In another application of in situ-generated Pd-NHC* catalysts, asymmetric coupling reactions involving C(sp3)-H bonds are studied. Highly enantioenriched indolines are accessible via this route. Remarkably, although this homogeneously catalyzed reaction requires high temperature (140-160°C) excellent asymmetric recognition of an enantiotopic C-H bond in an unactivated methylene unit has been realized. Most recent discoveries are regiodivergent reactions with cases where a racemic mixture is transformed into two equal parts of two structurally different indoline products of very high enantiomeric purity. Finally, promising results of enantioselective Suzuki-Miyaura aryl-aryl coupling reactions were obtained using chiral PEPPSI catalysts incorporating the NHC ligands.
机译:当使用新的原位产生的手性非外消旋N-杂环卡宾时,非常高的不对称诱导作用导致酰胺在钯的催化下分子内芳基化,从而生成3,3-二取代的羟吲哚和3-螺-氧吲哚。结构研究表明,构象锁定以避免烯丙基应变是理解这些配体中不同元素的作用的关键。在原位生成的Pd-NHC *催化剂的另一个应用中,研究了涉及C(sp3)-H键的不对称偶联反应。可通过此路线访问高度对映体的二氢吲哚。显着地,尽管这种均相催化的反应需要高温(140-160℃),但是已经实现了在未活化的亚甲基单元中对映体C-H键的极好的不对称识别。最新发现是区域扩散反应,其中外消旋混合物转化为对映体纯度很高的两种结构不同的二氢吲哚产物的两个相等部分。最后,使用掺有NHC配体的手性PEPPSI催化剂,可获得对映选择性的铃木-宫浦芳基-芳基偶联反应的有希望的结果。

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