首页> 外文期刊>Journal of Colloid and Interface Science >Multimodal Zr-Silicalite-1 zeolite nanocrystal aggregates with interconnected hierarchically micro-meso-macroporous architecture and enhanced mass transport property
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Multimodal Zr-Silicalite-1 zeolite nanocrystal aggregates with interconnected hierarchically micro-meso-macroporous architecture and enhanced mass transport property

机译:多峰Zr-Silicalite-1沸石纳米晶体聚集体,具有相互连接的分层微中观宏晶结构和增强的传质性能

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摘要

Hierarchical porous architecture with interconnected trimodal micro-meso-macroporous systems constructed from uniform zeolite Zr-doped silicalite-1 nanocrystals has been prepared. The synthesis has been made by using glycerin as a reaction medium via a quasi-solid-state crystallization of hierarchically meso-macroporous zirconosilicate precursor under the effect of the structure directing agent TPAOH. The presence of glycerin is crucial in the synthesis systems to maintain the porous hierarchy. The pores inter-connectivity, Zr location in the framework, the acidity and the catalytic activity have been studied by laser-hyperpolarized ~(129)Xe NMR spectroscopy, UV-visible spectroscopy, temperature-programmed desorption of ammonia and the catalytic isopropylbenzene cracking probe reaction, respectively. The products possess well-defined macrochannels interconnected with mesopores located in the macropore walls, which in turn have been constructed from microporous MFI-type zeolite units. ~(129)Xe NMR study indicated that the hierarchically micro-, meso-, macro-pore systems are homogeneously distributed throughout the final materials and well interconnected, which is important for molecular diffusion. The TPD-NH _3 investigation revealed that the hierarchically micro-meso-macroporous materials constructed from zeolite Zr-Silicalite-1 nanocrystals present strong acidity.
机译:已经制备了具有由均匀的Zr掺杂的Zr掺杂的silicalite-1纳米晶体构成的相互连接的三峰微中观大分子体系的分层多孔结构。在结构导向剂TPAOH的作用下,通过将甘油作为反应介质,通过分级介孔的锆硅酸锆前体的准固态结晶来进行合成。甘油的存在在合成系统中对于维持多孔层次至关重要。通过激光超极化〜(129)Xe NMR光谱,紫外可见光谱,程序升温的氨气脱附和催化异丙基苯裂解探针研究了孔之间的连通性,Zr在骨架中的位置,酸度和催化活性。反应分别。产品具有与位于大孔壁中的中孔相互连接的定义明确的大通道,这些中孔又由微孔MFI型沸石单元构成。 〜(129)Xe NMR研究表明,分层的微孔,中孔,大孔系统均匀分布在最终材料中,并且相互连接良好,这对于分子扩散很重要。 TPD-NH _3研究表明,由沸石Zr-Silicalite-1纳米晶体构成的分层微介孔大材料呈现强酸性。

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