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Dual-functional ionic porous organic framework for palladium scavenging and heterogeneous catalysis

机译:双功能离子多孔有机框架钯清除和多相催化

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摘要

Porous organic frameworks (POFs) with predesigned structures and tunable porosities have been widely studied in adsorption and heterogeneous catalysis. Introducing ionic structure into the framework endows POFs with new functionalities that may extend their applications. Here, we report new applications for a guanidinium-based ionic POF (IPOF-Cl) in palladium scavenging and heterogeneous catalysis. Due to the ionic framework and the porous structure, the IPOF-Cl displays fast adsorption kinetics and high adsorption capacities (up to 754 mg g(-1)) of Na2PdCl4 in aqueous solutions via a chemisorption (ion exchange) process. Significantly, it shows excellent scavenging activity towards trace amount of [PdCl4](2-) in aqueous solution. More importantly, the loaded [PdCl4](2-) species on the IPOF substrate are further reduced into ultrafine Pd nanoparticles with size of similar to 2-5 nm. The obtained IPOF-Pd(0) nanocomposite containing uniformly distributed Pd nanoparticles and hierarchical porous structure demonstrates high activity in catalyzing a range of Suzuki coupling reactions. This study provides new routes for the development of ionic porous organic materials for applications in metal scavenging and catalysis.
机译:多孔有机框架(pof)预先设计结构和可调疏密度广泛研究了吸附和异构催化。框架赋予pof的新功能这可能延长他们的应用程序。报告guanidinium-based新的应用程序(IPOF-Cl)钯离子POF扫气和多相催化。IPOF-Cl框架和多孔结构显示快速吸附动力学和高吸附能力(高达754毫克g (1))通过化学吸收作用Na2PdCl4水解决方案(离子交换)的过程。优秀的扫向跟踪活动(PdCl4)(2 -)在水溶液中。重要的是,加载(PdCl4)(2 -)物种IPOF基体进一步减少超细钯纳米颗粒的大小相似2 - 5纳米。含钯纳米粒子均匀分布和分级多孔结构所示高催化一系列铃木的活动耦合反应。路线的发展离子多孔在金属有机材料的应用清除和催化作用。

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