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Tailor-made porosities of fluorene-based porous organic frameworks for the pre-designable fabrication of palladium nanoparticles with size location and distribution control

机译:基于芴的多孔有机骨架的量身定制的孔隙度可预先设计制造尺寸位置和分布控制的钯纳米粒子

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摘要

Porous organic frameworks (POFs) are a promising new class of support for metal nanoparticles (NPs), with the size, location and distribution of metal NPs are closely related to the porous nature of the POFs. In this contribution, three fluorene-based POFs containing coordination-inert hydrogen, propyl and benzyl substituents at the 9-position of the fluorene units (POF-1, POF-2 and POF-3) were synthesized through a simple click reaction. The substituents exerted important influences on the surface area, pore volume and pore size of the POFs. Palladium NPs with a pre-designable size, location and distribution were synthesized through a substituent-controlled strategy. When POF-1 was employed as a support, ultrafine palladium NPs in the interior pores were generated, while the introduction of propyl at the 9-position of fluorene in POF-2 gave rise to dual-distributed palladium NPs in the interior pores and on the external surface. The use of the bulkier benzyl substituent resulted in the formation of palladium NPs on the external surface of POF-3. The hydrogenation of olefins has demonstrated that palladium NPs on the external surface possessed higher catalytic activity, while palladium NPs in the interior pores exhibited higher stability and recyclability. In addition, after Pd/POF-1, Pd/POF-2 and Pd/POF-3 were stored in air over half a year, palladium NPs in the interior pores showed a negligible change in comparison with fresh samples, while an obvious agglomeration was observed for palladium NPs on the external surface.
机译:多孔有机骨架(POF)是金属纳米颗粒(NP)的一种有前途的新型载体,金属NP的大小,位置和分布与POF的多孔性密切相关。通过这种贡献,通过简单的点击反应合成了在芴单元的9位上含有配位惰性氢,丙基和苄基取代基的三个芴基POF(POF-1,POF-2和POF-3)。取代基对POF的表面积,孔体积和孔径具有重要影响。通过取代基控制策略合成了具有预先设计的尺寸,位置和分布的钯纳米颗粒。当使用POF-1作为载体时,内部孔中会生成超细钯NP,而在POF-2中芴的9位上引入丙基会在内部孔中以及在孔上形成双分布的钯NP。外表面。使用更大的苄基取代基导致在POF-3的外表面上形成钯NP。烯烃的氢化表明,外表面上的钯NP具有较高的催化活性,而内孔中的钯NP具有较高的稳定性和可回收性。此外,将Pd / POF-1,Pd / POF-2和Pd / POF-3储存在空气中半年后,与新鲜样品相比,内部孔中的钯NP的变化可以忽略不计,而明显的团聚在外表面观察到钯NP。

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