异丁醛
选择性
苯乙烯
铈
材料科学
齿合度
催化作用
苯乙烯氧化物
氧化铈
光化学
高分子化学
共聚物
氧化物
组合化学
键裂
羧酸盐
双键
烯烃纤维
环氧化物
化学
激进的
聚苯乙烯
无机化学
作者
Caoyu Yang,Wei Liu,Hanlin Liu,TX Fan,Ting Tan,Qing Feng,Wenyang Wang,Zhiyong Tang,Guodong Li
摘要
ABSTRACT CeO 2 is widely studied in catalysis but struggles with precise defect and microenvironment modulation. Here, we report modulating dynamic coordination and microenvironment of defective Ce pairs on Ce 6 ‐oxo clusters in cerium terephthalate UiO‐66 for selective oxidation. With one coordinative vacancy per Ce site in dual‐site pairs, cerium 2‐fluoroterephthalate UiO‐66 exhibits excellent styrene epoxidation with 87.7% styrene oxide selectivity at near‐complete conversion using O 2 and isobutyraldehyde at 50°C, while excess coordinative vacancies per Ce site reduce styrene oxide selectivity to 73.4%. Furthermore, F‐substituted UiO‐66 outperforms terephthalate (67.5%) and 2‐methylterephthalate (60.7%) analogs, and CeO 2 (54%). Mechanistic studies reveal that isobutyraldehyde initiates binding to defective Ce site, deprotonating and reacting with O 2 to generate peroxo radicals that favor styrene vinyl C═C bond adsorption. Concurrently, vinyl C═C bond and adjacent defective Ce site co‐interact with O 2 to form robust Ce─O bond, where activated O 2 undergoes configuration transition from linear to side‐on, inducing dynamic switching of carboxylate groups between bidentate and monodentate coordination; meanwhile, F‐substituted UiO‐66 facilitates peroxo O─O cleavage and vinyl π bond cleavage, enhancing styrene oxide selectivity over H/CH 3 counterparts. Substantially, F‐substituted UiO‐66 enables efficient epoxidation of diverse alkenes under mild condition.
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