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首页> 外文期刊>Molecular Systems Design & Engineering >Facile development of microstructure-engineered, ligand-chelated SiO2-ZrO2 composite membranes for molecular separations
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Facile development of microstructure-engineered, ligand-chelated SiO2-ZrO2 composite membranes for molecular separations

机译:microstructure-engineered灵巧的发展,ligand-chelated SiO2-ZrO2复合膜分子分离

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In this study an easy template was devised for the fabrication and microstructural control of ligand-chelated, silica-zirconia-based composite membranes with a thickness of less than 400 nm. Hybrid materials with crosslinking between the organic moieties were successfully fabricated via the sol-gel co-condensation of 3-(trimethoxysilyl)propyl methacrylate and zirconium(IV) butoxide chelated via acetylacetone and allyl acetoacetate ligands using an azobisisobutyronitrile radical initiator as a crosslinking agent. Characterization of the films and gels via FTIR, XRD and thermogravimetry indicated that both the polymerization and hybridization of the networks was achieved. Gas permeation experiments showed that the organic crosslink-derived membranes possess molecular sieving properties (H2 permeance: ≈10~(-7) mol m~(-2) s~(-1) Pa~(-1); H2/N2 selectivity: ≈20-30) that are superior to those of non-crosslink-derived membranes (H2 permeance: ≈10~(-7) mol m~(-2) s~(-1) Pa~(-1); H2/N2 selectivity: ≈7-11). Quantitative analysis of the microstructures of the membranes based on the permeation behaviors of H2 and N2 revealed that organic crosslinking led to significant control of the microstructural characteristics of the membranes.
机译:在这项研究中一个简单的模板设计制造和微观结构的控制ligand-chelated, silica-zirconia-based复合膜的厚度小于400纳米。混合材料之间的交联有机是半个成功的通过的溶胶-凝胶法co-condensation3 -甲基丙烯酸丙酯和(trimethoxysilyl)通过乙酰丙酮锆(IV)醚螯合并使用一个乙酰乙酸烯丙酯配体偶氮二异丁腈激进的引发剂作为交联剂。通过红外光谱和凝胶,XRD和热重量分析法表明,聚合和杂化网络的实现。渗透实验表明,有机食品crosslink-derived膜具有分子筛选属性(H2透过:≈10 ~(7)摩尔m ~ (2) s ~ (1) Pa ~ (1);是优越的non-crosslink-derived膜(H2磁导:≈10 ~(7)摩尔m ~ (2) s ~ (1) Pa ~ (1);选择性:≈7 - 11)。膜的微观结构的基础上渗透H2和N2显示的行为有机交联导致显著的控制的微观结构特征膜。

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