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首页> 外文期刊>ACS applied materials & interfaces >Synthesis of Hierarchical Micro/Mesoporous Structures via Solid-Aqueous Interface Growth: Zeolitic Imidazolate Framework-8 on Siliceous Mesocellular Foams for Enhanced Pervaporation of Water/ Ethanol Mixtures
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Synthesis of Hierarchical Micro/Mesoporous Structures via Solid-Aqueous Interface Growth: Zeolitic Imidazolate Framework-8 on Siliceous Mesocellular Foams for Enhanced Pervaporation of Water/ Ethanol Mixtures

机译:通过固-水界面生长合成层级微/介孔结构:硅质介孔泡沫上的沸石咪唑盐骨架8,用于增强水/乙醇混合物的全蒸发

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摘要

A new hierarchical micro/mesoporous composite is synthesized via direct growth of microporous zeolitic imidazolate framework-8 (ZIF-8) on siliceous mesocellular foams (MCF). Depending on different synthetic conditions, ZIF-8 with two different particle sizes, i.e., ZIF-8 microparticles and ZIF-8 nanoparticles, were successfully formed on the external surface of amine-functionalized MCF (denoted as microZIF-8@MCF and nanoZIF-8@MCF, respectively). The synthesized hierarchical micro/mesoporous ZIF-8@MCF structures were characterized with several spectroscopic techniques including X-ray diffraction (XRD), solid-state NMR, and FT-IR and electron microscopic techniques (scanning electron microscope, SEM, and transmission electron microscopy, TEM). In addition, the pervaporation measurements of the liquid water/ethanol mixture show that nanoZIF-8@MCF/PVA (poly(vinyl alcohol) mixed-matrix membrane exhibits enhanced performance both on the permeability and separation factor. Compared to conventional routes for chemical etching, this study demonstrates a promising and simple strategy for synthesizing novel hierarchical porous composites exhibiting both advantages of mesoporous materials and microporous materials, which is expected to be useful for gas adsorption, separation, and catalysis. Khierarchical structures;;zeolitic imidazolate framework;;mesoporous silica;;pervaporation;;separation factor
机译:通过在硅质介孔泡沫(MCF)上直接生长微孔沸石咪唑酸酯骨架8(ZIF-8),合成了一种新的分层微/介孔复合材料。根据不同的合成条件,在胺官能化的MCF的外表面(分别表示为microZIF-8 @ MCF和nanoZIF- 8 @ MCF)。使用多种光谱技术(包括X射线衍射(XRD),固态NMR和FT-IR)以及电子显微镜技术(扫描电子显微镜,SEM和透射电子)对合成的分层微/介孔ZIF-8 @ MCF结构进行了表征。显微镜,TEM)。另外,液态水/乙醇混合物的全蒸发测量结果表明,与传统的化学刻蚀方法相比,nanoZIF-8 @ MCF / PVA(聚乙烯醇)混合基膜在渗透率和分离因子方面均表现出增强的性能。 ,这项研究表明了一种新颖且有前景的合成新型分层多孔复合材料的策略,该复合材料同时具有中孔材料和微孔材料的优点,有望用于气体的吸附,分离和催化。介孔二氧化硅渗透蒸发分离系数

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