Layer like porous materials with hierarchical structure

材料科学 多孔性 沸石 表征(材料科学) 介孔材料 纳米技术 催化作用 磷酸锆 纳米 化学工程 化学 复合材料 有机化学 冶金 磷酸盐 工程类
作者
Wiesław J. Roth,Barbara Gil,Wacław Makowski,Bartosz Marszałek,Pavla Eliášová
出处
期刊:Chemical Society Reviews [Royal Society of Chemistry]
卷期号:45 (12): 3400-3438 被引量:222
标识
DOI:10.1039/c5cs00508f
摘要

Many chemical compositions produce layered solids consisting of extended sheets with thickness not greater than a few nanometers. The layers are weakly bonded together in a crystal and can be modified into various nanoarchitectures including porous hierarchical structures. Several classes of 2-dimensional (2D) materials have been extensively studied and developed because of their potential usefulness as catalysts and sorbents. They are discussed in this review with focus on clays, layered transition metal oxides, silicates, layered double hydroxides, metal(iv) phosphates and phosphonates, especially zirconium, and zeolites. Pillaring and delamination are the primary methods for structural modification and pore tailoring. The reported approaches are described and compared for the different classes of materials. The methods of characterization include identification by X-ray diffraction and microscopy, pore size analysis and activity assessment by IR spectroscopy and catalytic testing. The discovery of layered zeolites was a fundamental breakthrough that created unprecedented opportunities because of (i) inherent strong acid sites that make them very active catalytically, (ii) porosity through the layers and (iii) bridging of 2D and 3D structures. Approximately 16 different types of layered zeolite structures and modifications have been identified as distinct forms. It is also expected that many among the over 200 recognized zeolite frameworks can produce layered precursors. Additional advances enabled by 2D zeolites include synthesis of layered materials by design, hierarchical structures obtained by direct synthesis and top-down preparation of layered materials from 3D frameworks.
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