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首页> 外文期刊>Catalysis Letters >Fabrication of Palladium Nanoparticles Supported on Natural Volcanic Tuff/Fe3O4 and Its Catalytic Role in Microwave-Assisted Suzuki-Miyaura Coupling Reactions
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Fabrication of Palladium Nanoparticles Supported on Natural Volcanic Tuff/Fe3O4 and Its Catalytic Role in Microwave-Assisted Suzuki-Miyaura Coupling Reactions

机译:钯纳米粒子的制备在天然火山凝固/ Fe3O4上负载及其在微波辅助铃木瘤偶联反应中的催化作用

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摘要

Natural minerals have a huge potential as stabilizers in the catalytic systems due to their high mechanical durability, porous surface, non-toxicity and abundance in nature. This study aims to the development of a magnetically retrievable, heterogeneous palladium catalytic system derived from volcanic tuff (VT), an abundant form of zeolite, for Suzuki-Miyaura coupling (SMC) reactions. For this purpose, a new catalyst support was designed by loading volcanic tuff with Fe3O4(VT/Fe3O4) and palladium nanoparticles were prepared on VT/Fe3O4 via wet chemical reduction method (Pd NPs@VT/Fe3O4). Then, Pd NPs@VT/Fe3O4 was evaluated as a heterogeneous catalyst in the microwave-assisted production of biaryl via SMC reactions. Pd NPs@VT/Fe3O4 efficiently coupled various substituted aryl iodides, bromides and chlorides in a very short reaction time, solvent-free media and in an air environment. Catalytic tests indicated that Pd NPs@VT/Fe3O4 converted aryl halides into desired biaryls with a high yield up to 99%. Moreover, it was showed that Pd NPs@VT/Fe3O4 retained its stability and catalytic performance by producing 92% yield after eight successive cycles. This study demonstrated that VT can be a good alternative support alongside other known supports such as biopolymers, carbon and silica based materials and it can be utilized for the synthesis of different catalysts. Graphic
机译:天然矿物由于其高机械耐久性、多孔表面、无毒性和丰富的天然资源,在催化体系中作为稳定剂具有巨大的潜力。本研究旨在从火山凝灰岩(VT,一种丰富的沸石形式)衍生出一种磁性可回收的多相钯催化体系,用于铃木-宫村偶联(SMC)反应。为此,通过在火山凝灰岩中加入Fe3O4(VT/Fe3O4)设计了一种新型催化剂载体,并通过湿化学还原法(Pd)在VT/Fe3O4上制备了钯纳米颗粒NPs@VT/Fe3O4)。那么,警察NPs@VT/在微波辅助SMC反应制备二芳基的过程中,对Fe3O4作为多相催化剂进行了评价。警察局NPs@VT/Fe3O4在极短的反应时间、无溶剂介质和空气环境中有效地偶联了各种取代芳基碘、溴化物和氯化物。催化试验表明,钯NPs@VT/Fe3O4将芳基卤化物转化为所需的二芳基,产率高达99%。此外,还表明PdNPs@VT/在连续八次循环后,Fe3O4的产率达到92%,从而保持了其稳定性和催化性能。这项研究表明,VT可以与其他已知载体(如生物聚合物、碳和硅基材料)一起作为一种良好的替代载体,并可用于合成不同的催化剂。图解的

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