催化作用
双金属片
薗头偶联反应
酞菁
炔烃
聚合
卤化物
碘苯
化学
共价键
芳基
金属
材料科学
高分子化学
金属有机骨架
组合化学
化学工程
配体(生物化学)
盐(化学)
同音
共价有机骨架
无机化学
纳米团簇
有机化学
多相催化
纳米颗粒
纳米复合材料
纳米技术
环糊精
单体
钯
铜
分子内力
合成子
作者
Murad Najafov,Daniele Bonavia,Felipe Gándara,Maarten Nachtegaal,Mounir Mensi,Ali Coşkun
标识
DOI:10.1021/acs.chemmater.6c00391
摘要
High Resolution Image Download MS PowerPoint Slide Bimetallic single-atom catalysts containing two distinct metals within well-defined and spatially controlled environments can offer cooperative reactivity. Here, we present a versatile design strategy for constructing metallophthalocyanine covalent organic frameworks (COFs) containing precisely engineered Pd and Cu sites through mixed-metal ionothermal synthesis, followed by wet impregnation. The corresponding COF, named Pd–Cu@pyPPC–NaCl, is synthesized through the polymerization of tetracyanopyrazine in a molten salt mixture of CuCl 2 /ZnCl 2 /NaCl, enabling the incorporation of Cu within the N 4 phthalocyanine cavity, followed by the incorporation of Pd as the secondary metal into the pore through wet impregnation. This orthogonal metal incorporation yields atomically dispersed and spatially controlled catalytic centers with Cu and Pd loadings of 16.2 and 6.2 wt %, respectively, in a crystalline organic support. Pd–Cu@pyPPC–NaCl exhibits excellent catalytic performance in the Sonogashira–Hagihara cross-coupling of iodobenzene and phenylacetylene, delivering yields above 95% in batch and above 90% under continuous-flow conditions with good selectivity. The significantly lower catalytic activity of control COFs involving Pd@pyPPC–NaCl and Cu@pyPPC–NaCl supported synergistic catalytic activity, in which Pd and Cu fulfill complementary roles in aryl halide activation and alkyne activation, respectively, on the COF support.
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