化学
直接的
电泳剂
磷酸
亲核细胞
催化作用
密度泛函理论
光化学
电子转移
选择性
计算化学
酸催化
组合化学
有机化学
激发态
核物理学
物理
单重态
作者
Ying Wang,Weichi Chen,Yilei Lai,Abing Duan
摘要
To develop new radical synthesis strategies, a profound understanding of the electronic transfer mechanism is critical. An activation model called relayed proton-coupled electron transfer (relayed-PCET) was developed and investigated for chiral phosphoric acid-catalyzed diradical reactions by density functional theory (DFT). The driving force of electron transfer from the nucleophile to the electrophile is the proton transfer that occurs via the chiral phosphoric acid (CPA) catalyst to the electrophile. Moreover, the origins of the selectivity can be explained by distortion of the catalyst, favorable hydrogen bonding, and strong interactions of the substrates with substituents of the CPAs.
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