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两种手性催化剂同时参与的协同不对称催化中立体发散的起源。

Origin of Stereodivergence in Cooperative Asymmetric Catalysis with Simultaneous Involvement of Two Chiral Catalysts.

机构信息

Department of Chemistry, Indian Institute of Technology Bombay , Powai, Mumbai 400076, India.

出版信息

J Am Chem Soc. 2015 Dec 23;137(50):15712-22. doi: 10.1021/jacs.5b05902. Epub 2015 Dec 4.

Abstract

Accomplishing high diastereo- and enantioselectivities simultaneously is a persistent challenge in asymmetric catalysis. The use of two chiral catalysts in one-pot conditions might offer new avenues to this end. Chirality transfer from a catalyst to product gets increasingly complex due to potential chiral match-mismatch issues. The origin of high enantio- and diastereoselectivities in the reaction between a racemic aldehyde and an allyl alcohol, catalyzed by using axially chiral iridium phosphoramidites PR/S-Ir and cinchona amine is established through transition-state modeling. The multipoint contact analysis of the stereocontrolling transition state revealed how the stereodivergence could be achieved by inverting the configuration of the chiral catalysts that are involved in the activation of the reacting partners. While the enantiocontrol is identified as being decided in the generation of PR/S-Ir-π-allyl intermediate from the allyl alcohol, the diastereocontrol arises due to the differential stabilizations in the C-C bond formation transition states. The analysis of the weak interactions in the transition states responsible for chiral induction revealed that the geometric disposition of the quinoline ring at the C8 chiral carbon of cinchona-enamine plays an anchoring role. The quinolone ring is noted as participating in a π-stacking interaction with the phenyl ring of the Ir-π-allyl moiety in the case of PR with the (8R,9R)-cinchona catalyst combination, whereas a series of C-H···π interactions is identified as vital to the relative stabilization of the stereocontrolling transition states when PR is used with (8S,9S)-cinchona.

摘要

同时实现高的非对映选择性和对映选择性是不对称催化中的一个持续挑战。在一锅条件下使用两个手性催化剂可能为此提供新的途径。由于潜在的手性匹配不匹配问题,催化剂到手性产物的转移变得越来越复杂。通过过渡态建模,确定了外消旋醛和烯丙醇在轴手性铱磷酰胺 PR/S-Ir 和金鸡纳碱胺催化下反应的高对映选择性和非对映选择性的起源。立体控制过渡态的多点接触分析揭示了如何通过反转参与反应伙伴活化的手性催化剂的构型来实现立体发散。虽然对映体控制被确定为从烯丙醇生成 PR/S-Ir-π-烯丙基中间体的过程中决定,但非对映体控制是由于 C-C 键形成过渡态中的不同稳定化引起的。负责手性诱导的过渡态中弱相互作用的分析表明,在金鸡纳烯胺的 C8 手性碳处的喹啉环的几何布置起着锚固作用。当 PR 与(8R,9R)-金鸡纳催化剂组合使用时,喹啉环被注意到与 Ir-π-烯丙基部分的苯基环发生π堆积相互作用,而当 PR 与(8S,9S)-金鸡纳一起使用时,一系列 C-H···π 相互作用被认为对立体控制过渡态的相对稳定至关重要。

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