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首页> 外文期刊>Angewandte Chemie >Unveiling the Local Structure of Palladium Loaded into Imine-Linked Layered Covalent Organic Frameworks for Cross-Coupling Catalysis
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Unveiling the Local Structure of Palladium Loaded into Imine-Linked Layered Covalent Organic Frameworks for Cross-Coupling Catalysis

机译:揭示钯的局部结构,载入亚胺连接的层状共价有机骨架中,用于交叉偶联催化

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摘要

Layered covalent organic frameworks (2D-COFs), composed of reversible imine linkages and accessible pores, offer versatility for chemical modifications towards the development of catalytic materials. Nitrogen-enriched COFs are good candidates for binding Pd species. Understanding the local structure of reacting Pd sites bonded to the COF pores is key to rationalize interactions between active sites and porous surfaces. By combining advanced synchrotron characterization methods with periodic computational DFT modeling, the precise atomic structure of catalytic Pd sites attached to local defects is resolved within an archetypical imine-linked 2D-COF. This material was synthesized using an in situ method as a gel, under which imine hydrolysis and metalation reactions are coupled. Local defects formed in situ within imine-linked 2D-COF materials are highly reactive towards Pd metalation, resulting in active materials for Suzuki-Miyaura cross-coupling reactions.
机译:分层的共价有机框架(2D-COFS),由可逆的亚胺键和可触及的孔隙组成,为催化材料开发的化学修饰提供多功能性。 富含氮的COF是结合PD物种的良好候选者。 理解与COF孔粘合的局部PD位点的局部结构是合理化活性位点和多孔表面之间的相互作用的关键。 通过将具有周期性计算DFT建模的先进的同步调节方法组合,附着于局部缺陷的催化PD位点的精确原子结构在原型亚胺连接的2D-COF内被解析。 使用原位方法合成该材料作为凝胶,在其中亚胺水解和金属化反应偶联。 在亚胺连接的2D-COF材料中原位形成的局部缺陷对Pd金属化具有高度反应性,导致铃木 - 宫留的交叉偶联反应的活性材料。

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