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具有互连成核-介孔-大孔分级结构的多模态 Zr-Silicalite-1 沸石纳米晶体聚集体及其增强的传质性能。

Multimodal Zr-Silicalite-1 zeolite nanocrystal aggregates with interconnected hierarchically micro-meso-macroporous architecture and enhanced mass transport property.

机构信息

State Key Laboratory of Advanced Technology for Material Synthesis and Processing, Wuhan University of Technology, Luoshi Road 122, Wuhan 430070, PR China.

出版信息

J Colloid Interface Sci. 2012 Jul 1;377(1):368-74. doi: 10.1016/j.jcis.2012.03.018. Epub 2012 Mar 20.

DOI:10.1016/j.jcis.2012.03.018
PMID:22498367
Abstract

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.

摘要

已经制备出了一种具有互连成三孔(微-介-大)结构的分级多孔结构,其由均匀的沸石 Zr 掺杂硅沸石-1 纳米晶体构建而成。该合成是通过在结构导向剂 TPAOH 的作用下,使用甘油作为反应介质,通过分级中孔-大孔硅锆酸盐前体的准固态结晶来实现的。甘油的存在对于维持多孔结构的分级至关重要。通过激光极化(129)Xe NMR 光谱、紫外-可见光谱、氨的程序升温脱附以及异丙苯裂化探针反应分别研究了孔的连通性、Zr 在骨架中的位置、酸度和催化活性。这些产物具有明确的大孔,这些大孔与位于大孔壁中的介孔相连通,而这些介孔则由微孔 MFI 型沸石单元构成。(129)Xe NMR 研究表明,分级的微孔-介孔-大孔体系在整个最终材料中均匀分布并相互连通,这对于分子扩散非常重要。TPD-NH3 研究表明,由沸石 Zr-硅沸石-1 纳米晶体构建的分级微孔-介孔-大孔材料具有很强的酸度。

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