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首页> 外文期刊>European journal of inorganic chemistry >New insights in the formation of combined zeolitic/mesoporous materials by using a one-pot templating synthesis
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New insights in the formation of combined zeolitic/mesoporous materials by using a one-pot templating synthesis

机译:使用一锅模板合成法形成沸石/中孔混合材料的新见解

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Zeolitic growth is often absent or occurs in separate phases when synthetic strategies based on the combination of zeolite templates and mesopore templating agents are applied. In this work, zeolitic growth and mesopore formation have been investigated at different temperatures by applying a one-pot templating approach, based on a TS-1 zeolite synthesis whereby part of the microtemplate (tetrapropylammonium hydroxide, TPAOH) is replaced by a mesotemplate (hexadecyltrimethylammonium bromide, CTMABr). Moreover, the synthesis duration and the molar ratio of the microtemplate/mesotemplate have also been studied. The different syntheses clearly show the inherent competitive mechanism between zeolitic growth and mesopore formation. These insights have led to the conclusion that by following a one-pot templating strategy with standard, nonexotic commercial templates, i.e. CTMABr and TPAOH, it is not possible to develop a "true" hierarchical mesoporous zeolite, meaning a mesoporous siliceous material with highly crystalline zeolitic walls. The resultant materials are instead combined zeolitic/mesoporous composite structures with, however, highly tuneable and controllable porosity characteristics.
机译:当应用基于沸石模板和中孔模板剂的组合的合成策略时,沸石的生长通常不存在或发生在不同的阶段。在这项工作中,通过基于TS-1沸石合成的一锅模板方法,研究了在不同温度下沸石的生长和中孔的形成,其中一部分微模板(四丙基氢氧化铵,TPAOH)被中模板取代(十六烷基三甲基铵)溴,CTMABr)。此外,还研究了微模板/内消旋模板的合成持续时间和摩尔比。不同的合成清楚地表明了沸石的生长和中孔形成之间的固有竞争机制。这些见解得出的结论是,通过采用标准的非异质商业模板(即CTMABr和TPAOH)进行一锅模板化策略,不可能开发出“真正的”分级中孔沸石,即具有高度结晶性的中孔硅质材料。沸石墙。相反,所得材料是具有高度可调节和可控制的孔隙率特性的组合的沸石/介孔复合结构。

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