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Efficient Manipulation of Continuous AFI-Type Aluminophosphate Membranes with Distinctive Microstructures on Macroporous α-Al2O3 Substrates

机译:大孔α-Al2O3基体上具有独特微观结构的连续AFI型铝磷酸盐膜的有效操纵

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摘要

The availability of continuous and well-defined AFI-type aluminophosphate membranes (AFI membranes) would trigger their applications in innovative materials. A well-designed manipulation strategy is proposed to produce continuous AFI membranes with four different microstructures over porous α-Al2O3 substrates. A double-layer and highly c-oriented AFI membrane of hexagonal prisms is obtained when a thin layer of medium molecular weight (MMW) chitosan is employed as the structure-directing matrix together with aluminum isopropoxide (AIP) as the Al source. It can be transformed to a single-layer and highly c-oriented AFI membrane of hexagonal prisms if the structure-directing matrix is replaced by a thin layer of low molecular weight (LMW) chitosan. When the Al source is changed to pseudo-boehmite, the single-layer AFI membrane is composed of highly ordered spherical agglomerates of small crystals. Furthermore, the membrane will turn to the double-layer AFI membrane of highly-ordered crystal agglomerates if a thin layer of MMW chitosan is used once again, keeping pseudo-boehmite as the Al source. The manipulation methodology established here is rather reliable with a pretty high reproducibility.
机译:连续且轮廓分明的AFI型铝磷酸盐膜(AFI膜)的可用性将触发其在创新材料中的应用。提出了一种设计良好的操纵策略,以在多孔α-Al2O3衬底上生产具有四个不同微结构的连续AFI膜。当使用中等分子量(MMW)壳聚糖薄层作为结构导向基质,同时使用异丙醇铝(AIP)作为Al源时,可以获得六棱柱的双层且高度c取向的AFI膜。如果将结构导向基质替换为低分子量(LMW)壳聚糖薄层,则可以将其转变为六角棱镜的单层且高度c取向的AFI膜。当Al来源更改为假勃姆石时,单层AFI膜由高度有序的小晶体球形团聚体组成。此外,如果再次使用MMW壳聚糖薄层,则膜将变为高度有序晶体附聚物的双层AFI膜,并保留假勃姆石作为Al源。此处建立的操作方法相当可靠,并且具有很高的可重复性。

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