化学
对映选择合成
位阻效应
手性(物理)
轴手性
配体(生物化学)
金属转移
立体化学
催化作用
磷化氢
催化循环
钯
组合化学
有机化学
生物化学
Nambu–Jona Lasinio模型
手征对称破缺
物理
受体
量子力学
夸克
作者
Kin Boon Gan,Rong‐Lin Zhong,Zhenwei Zhang,Fuk Yee Kwong
摘要
Biaryl phosphines bearing C(Ar)–C(Ar) axial chirality are commonly known and have been successfully applied in many asymmetric catalyses. Nevertheless, the development of a chiral ligand having an axially chiral C(Ar)–N backbone remains elusive due to its undesirable less restricted rotational barrier. In fact, it is highly attractive to overcome this challenge in ligand development as the incorporation of an N-donor component at the chiral axis is more favorable toward the transient metal coordination, and thus, a better outcome of stereocommunication is anticipated to the approaching substrates. Herein, we present a rational design of a new collection of chiral phosphines featuring a C–N axial chirality and their applications in enantioselective Suzuki–Miyaura cross-coupling for accessing highly steric hindered tetra-ortho-substituted biaryls (26 examples up to 98:2 er). It is worth noting that the embodied carbazolyl framework is crucial to succeed the reaction, by the fruitful steric relief of bulky substrate coordination and transmetalation via a fleeting Pd–N jumping to Pd-π fashion. DFT calculation reveals an interesting Pd-arene-walking characteristic across the carbazolyl plane for attaining a lower energy-preferred route in a catalytic cycle. The theoretical study successfully predicts the stereooutcome and matches the enantioselectivity with the experimental results.
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