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Hierarchical Porous Interlocked Polymeric Microcapsules: Sulfonic Acid Functionalization as Acid Catalysts

机译:分层多孔互锁聚合物微胶囊:磺酸功能化作为酸催化剂

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摘要

Owing to their unique structural and surface properties, mesoporous microspheres are widely applied in the catalytic field. Generally, increasing the surface area of the specific active phase of the catalyst is a good method, which can achieve a higher catalytic activity through the fabrication of the corresponding catalytic microspheres with the smaller size and hollow structure. However, one of the major challenges in the use of hollow microspheres (microcapsules) as catalysts is their chemical and structural stability. Herein, the grape-like hypercrosslinked polystyrene hierarchical porous interlocked microcapsule (HPIM-HCL-PS) is fabricated by SiO2 colloidal crystals templates, whose structure is the combination of open mouthed structure, mesoporous nanostructure and interlocked architecture. Numerous microcapsules assembling together and forming the roughly grape-like microcapsule aggregates can enhance the structural stability and recyclability of these microcapsules. After undergoing the sulfonation, the sulfonated HPIM-HCL-PS is served as recyclable acid catalyst for condensation reaction between benzaldehyde and ethylene glycol (TOF = 793 h−1), moreover, exhibits superior activity, selectivity and recyclability.
机译:中孔微球由于其独特的结构和表面性质而被广泛应用于催化领域。通常,增加催化剂的特定活性相的表面积是一种好方法,其可以通过制造具有较小尺寸和中空结构的相应催化微球来实现较高的催化活性。然而,使用中空微球(微囊)作为催化剂的主要挑战之一是它们的化学和结构稳定性。本文采用SiO2胶体晶体模板制备了葡萄状超交联聚苯乙烯分级多孔互锁微胶囊(HPIM-HCL-PS),其结构为开口结构,介孔纳米结构和互锁结构的组合。大量的微囊组装在一起并形成大致葡萄状的微囊聚集体可以增强这些微囊的结构稳定性和可回收性。磺化后的HPIM-HCL-PS可以用作苯甲醛与乙二醇(TOF = 793 h -1 )缩合反应的可循环酸催化剂,而且具有优异的活性,选择性和稳定性。可回收性。

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