氢甲酰化
催化作用
吸附
烯烃纤维
丙烯
催化循环
化学
再分配(选举)
材料科学
光化学
电子转移
电子效应
化学工程
化学物理
环己烯
光电阴极
多相催化
同种类的
密度泛函理论
基质(水族馆)
电子结构
物理化学
作者
Guoqing Wang,Miao Jiang,Zhao Sun,Benhan Fan,Guangjun Ji,Cunyao Li,Guifa Long,Li Yan,Yunjie Ding
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2026-03-12
卷期号:16 (7): 6453-6463
标识
DOI:10.1021/acscatal.5c08259
摘要
Heterogeneous catalyst (Rh 1 /POPs-PPh 3 ) has been successfully applied in the industrial hydroformylation process and offers long-term durability. Nevertheless, although the hydroformylation activity of Rh 1 /POPs-PPh 3 is slightly higher than that of its homogeneous counterpart, it still fails to reach the ideal value. Herein, we developed a remote fluorination strategy to achieve the directional electronic modulation of Rh sites. The optimized Rh 1 /POPs-PPh 3 -6F catalyst exhibits a turnover frequency (TOF) that is 2.8 times higher than that of Rh 1 /POPs-PPh 3 -0F, maintaining stability throughout 300 h of continuous operation. EXAFS results demonstrate that the remote fluorination strategy does not alter the coordination environment of Rh. Characterizations combined with DFT calculations clarify the electron transmission path and further demonstrate that fluorine-induced electronic redistribution selectively modulates substrate adsorption. Specifically, it facilitates propene adsorption strength and activation, while weakening the CO adsorption strength, an effect driven by the optimized orbital overlap and enhanced π-backdonation. This electronic redistribution reduces the energy barriers for both olefin and CO insertions, thereby dual-governing the acceleration of the catalytic cycle and ultimately boosting catalytic performance.
科研通智能强力驱动
Strongly Powered by AbleSci AI