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Ultrafine and highly dispersed platinum nanoparticles confined in a triazinyl-containing porous organic polymer for catalytic applications

机译:超细和高度分散的铂金纳米粒子在triazinyl-containing多孔有机聚合物的催化应用

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摘要

The fabrication of stable porous organic polymers (POPs) with heteroatoms that can firmly anchor noble metal nanoparticles (NPs) is a challenging and significant task for heterogeneous catalysis. In the current work, we used piperazine and cyanuric chloride as precursors and successfully fabricated a PC-POP material. Then, through the impregnation method and subsequently the reduction method, ultrafine Pt NPs were confined in the PC-POP with a high dispersion. The Pt NP active sites are accessible due to the uniform mesopores of the PC-POP that facilitate diffusion and mass transfer. The organic cages and nitrogen atoms in the PC-POP frameworks can make the Pt NPs stably anchored in the PC-POP during the catalytic process. The obtained Pt@PC-POP nanocatalyst showed excellent catalytic activity and good recyclability in the selective hydrogenation of halogenated nitrobenzenes and catalytic hydrolysis of ammonia borane as compared with many other reported noble metal catalysts.
机译:稳定的多孔有机聚合物的制造(弹出)和杂原子可以牢牢锚贵金属纳米颗粒(NPs)是一个挑战对多相催化和重要的任务。在当前的工作中,我们使用哌嗪和三聚氰酰氯作为前体和成功PC-POP材料制作的。浸渍法和随后的还原法,超细Pt NPs在在PC-POP高色散。由于均匀活跃网站访问中孔的PC-POP促进扩散和传质。原子在PC-POP框架可以使PtNPs稳定在PC-POP抛锚催化过程。nanocatalyst表现出良好的催化活性在选择性和良好的可回收性卤代硝基苯加氢和氨硼烷的催化水解相比之下,许多其他贵金属报告催化剂。

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