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首页> 外文期刊>Advanced Functional Materials >Tailoring the Separation Behavior of Hybrid Organosilica Membranes by Adjusting the Structure of the Organic Bridging Group
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Tailoring the Separation Behavior of Hybrid Organosilica Membranes by Adjusting the Structure of the Organic Bridging Group

机译:通过调整有机桥基的结构来定制杂化有机硅膜的分离行为

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摘要

Hybrid organically linked silica is a highly promising class of materials for the application in energy-efficient molecular separation membranes. Its high stability allows operation under aggressive working conditions. Herein is reported the tailoring of the separation performance of these hybrid silica membranes by adjusting the size, flexibility, shape, and electronic structure of the organic bridging group. A single generic procedure is applied to synthesize nanoporous membranes from bridged silsesquioxane precursors with different reactivities. Membranes with short alkylene (CH_2 and C_2H_4) bridging groups show high H_2/N_2 permeance ratios, related to differences in molecular size. The highest CO_2/H_2 permeance ratios, related to the affinity of adsorption in the material, are obtained for longer (C_8H_(16)) alkylene and aryl bridges. Materials with long flexible alkylene bridges have a hydrophobic surface and show strongly temperature-dependent molecular transport as well as a high n-butanol flux in a pervaporation process, which is indicative of organic polymerlike properties. The versatility of the bridging group offers an extensive toolbox to tune the nanostructure and the affinity of hybrid silica membranes and by doing so to optimize the performance towards specific separation challenges. This provides excellent prospects for industrial applications such as carbon capture and biofuel production.
机译:杂化有机连接二氧化硅是一类非常有前途的材料,可用于节能分子分离膜。它的高稳定性允许在恶劣的工作条件下运行。本文报道了通过调节有机桥连基团的尺寸,柔性,形状和电子结构来定制这些杂化二氧化硅膜的分离性能。单一通用程序适用于由具有不同反应性的桥联倍半硅氧烷前体合成纳米多孔膜。具有短亚烷基(CH_2和C_2H_4)桥连基的膜表现出高的H_2 / N_2渗透率,这与分子大小的差异有关。对于较长的(C_8H_(16))亚烷基和芳基桥,可获得与材料中吸附亲和力相关的最高CO_2 / H_2渗透率。具有长的柔性亚烷基桥的材料具有疏水性表面,并且在全蒸发过程中表现出强烈的温度依赖性分子传输以及高正丁醇通量,这表明了有机聚合物样的性质。桥联基团的多功能性提供了一个广泛的工具箱,可调节纳米结构和杂化硅胶膜的亲和力,从而优化针对特定分离挑战的性能。这为工业应用如碳捕获和生物燃料生产提供了极好的前景。

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  • 来源
    《Advanced Functional Materials 》 |2011年第12期| p.2319-2329| 共11页
  • 作者单位

    MESA+ Institute for Nanotechnology University of Twente P.O. Box 21 7, 7500 AE Enschede, The Netherlands,Van 't Hoff Institute for Molecular Sciences University of Amsterdam Science Park 904, 1098 XH Amsterdam, The Netherlands,Energy research Centre of the Netherlands P.O. Box 1, 1755 ZC Petten, The Netherlands;

    Energy research Centre of the Netherlands P.O. Box 1, 1755 ZC Petten, The Netherlands;

    Van 't Hoff Institute for Molecular Sciences University of Amsterdam Science Park 904, 1098 XH Amsterdam, The Netherlands;

    Energy research Centre of the Netherlands P.O. Box 1, 1755 ZC Petten, The Netherlands;

    Energy research Centre of the Netherlands P.O. Box 1, 1755 ZC Petten, The Netherlands;

    MESA+ Institute for Nanotechnology University of Twente P.O. Box 21 7, 7500 AE Enschede, The Netherlands;

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