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首页> 外文期刊>New Journal of Chemistry >High surface area titanium phosphonate materials with hierarchical porosity for multi-phase adsorption
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High surface area titanium phosphonate materials with hierarchical porosity for multi-phase adsorption

机译:具有高孔隙率的高表面积膦酸钛材料,用于多相吸附

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Inorganic-organic hybrid titanium phosphonate materials with a hierarchically-porous structure were synthesized by a mild solvent evaporation strategy using 1-hydroxyethylidene-1,1-diphosphonic acid as an organophosphorus coupling molecule. The preparations were accomplished with the use of triblock copolymers F127 and P123 as structure-directing agents. All the samples possessed a macroporous morphology of the mesoporous framework with a high surface area, and were characterized by SEM, TEM and N2 sorption analysis. The hydroxyethylidene-bridged organophosphonate groups were homogeneously incorporated into the network of the hierarchical porous solid, as revealed by FT-IR, MAS NMR, TGA-DSC and XPS measurements. The hybrid materials were used as adsorbents for the liquid phase adsorption of Cu~(2+) ions in water and the gas phase adsorption of CO2, showing high adsorption capacity and good reusability, which makes them promising adsorbents for practical applications in environmental remediation.
机译:通过使用1-羟基亚乙基-1,1-二膦酸作为有机磷偶联分子的温和溶剂蒸发策略合成了具有分层多孔结构的无机-有机杂化钛酸钛材料。通过使用三嵌段共聚物F127和P123作为结构导向剂来完成制备。所有样品均具有高表面积的中孔骨架大孔形态,并通过SEM,TEM和N2吸附分析进行了表征。如通过FT-IR,MAS NMR,TGA-DSC和XPS测量所揭示,将羟基亚乙基桥接的有机膦酸酯基团均匀地结合到分层多孔固体的网络中。该杂化材料作为吸附剂用于水中Cu〜(2+)离子的液相吸附和CO2的气相吸附,具有较高的吸附能力和良好的可重复利用性,使其在环境修复中具有广阔的应用前景。

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