催化作用
芳基
镍
选择性
Atom(片上系统)
卤化物
化学
金属
共价键
金属有机骨架
氧化加成
组合化学
密度泛函理论
戒指(化学)
计算化学
光化学
无机化学
物理化学
有机化学
烷基
吸附
计算机科学
嵌入式系统
作者
Kolleboyina Jayaramulu,Gobbilla Sai Kumar,Deepak Kumar,Aditya Thakur,Mukul Gupta,Praveen Kumar Velpula,Rabindranath Lo
标识
DOI:10.1002/asia.202401578
摘要
Single‐atom‐based Metal‐Organic Frameworks (MOFs) hold great promising candidates for heterogeneous catalysis, demonstrating outstanding catalytic activity and exceptional product selectivity. This is attributed to their optimal atom utilization, high surface energy, and the presence of unsaturated coordination environments. Here in, we have developed a nickel single‐atom catalyst (UiO‐66/Ni) featuring Ni single atoms covalently attached to defect‐engineered Zr‐oxide clusters within the stable UiO‐66 framework, synthesized via a straightforward solution impregnation method. The resulting UiO‐66/Ni catalyst, with a uniform distribution of nickel single atoms, exhibits remarkable stability and demonstrates exceptional performance in C–S coupling reactions of various aryl thiols and aryl halides, yielding desired products with outstanding catalytic activity and selectivity, regardless of electron‐donating or withdrawing substituents at room temperature and maintains robust stability even after six cycles. Advanced density functional theory calculations have been exploited to clarify the mechanism of C–S cross‐coupling for examining the influence of substituents on the aromatic ring of aryl thiols through free energy profiles. The collaborative action of nickel single atoms and the defects of UiO‐66 during the oxidative addition and reductive elimination steps facilitated the formation of energetically favorable C–S cross‐coupling products.
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