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Redox-configurable ambidextrous catalysis: structural and mechanistic insight

机译:氧化还原可配置双歧催化:结构和机理的见解。

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摘要

A ligand capable of adopting two pseudo-enantiomeric helically chiral states when bound to copper has been applied as an asymmetric catalyst in the Michael addition of malonate substrates to nitrostyrenes. The absolute configuration of the helically chiral ligand is inverted upon oxidation/reduction of the copper center. In this way, the handedness of the Michael addition product (R/S) can be selected based on the handedness of the catalyst (Λ/Δ). Exciton coupled circular dichroism (ECCD) was used to identify which of the two pseudo-enantiomeric forms the catalyst adopted after reduction/oxidation, with additional support from X-ray crystallographic data. The synthesis of the ligand was achieved in five steps with an overall 61% yield. Enantiomeric excesses of the Michael addition products of up to 72% (S) and 70% (R) were obtained in acetonitrile. The ability to choose the handedness of the product based on the chiral state of the catalyst has been demonstrated with several different solvents, bases, nitrostyrene/malonate substrates, and prochiral malonate substrates. A combination of molecular modelling, crystal structure and kinetic data suggest that one urea moiety of the catalyst ligand likely binds the nitrostyrene substrate while blocking the Re face of the nitrostyrene in the transition state.
机译:当将丙二酸酯底物迈克尔加成到硝基苯乙烯中时,已经将能够与铜键合时采用两个伪对映体螺旋手性态的配体用作不对称催化剂。螺旋手性配体的绝对构型在铜中心的氧化/还原时被反转。以这种方式,可以基于催化剂的惯性(Λ/Δ)选择迈克尔加成产物的惯性(R / S)。激子耦合圆二色性(ECCD)用于鉴定还原/氧化后采用的两种假对映异构体中的哪一种,并得到X射线晶体学数据的额外支持。配体的合成分五个步骤完成,总产率为61%。在乙腈中获得高达72%(S)和70%(R)的Michael加成产物的对映体过量。已经用几种不同的溶剂,碱,硝基苯乙烯/丙二酸酯底物和前手性丙二酸酯底物证明了基于催化剂的手性状态选择产物的手感的能力。分子建模,晶体结构和动力学数据的组合表明,催化剂配体的一个尿素部分可能结合硝基苯乙烯底物,同时在过渡态中封闭了硝基苯乙烯的Re面。

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