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Metal-Organic Gels Based on a Bisamide Tetracarboxyl Ligand for Carbon Dioxide, Sulfur Dioxide, and Selective Dye Uptake

机译:基于二氧化二氧化碳,二氧化硫和选择性染料的金属 - 有机凝胶

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A metal-organic gel (metallogel) based on the new tetracarboxyl ligand N-1,N-4-(diterephthalic acid)terephthalamide in combination with chromium-(III) has been converted into its xero- and aerogel and demonstrated to have excellent specific sorption properties for dyes in its metallogel state, where fuchsine is adsorbed faster than the two other dyes, calcein and disulfine blue, and for water, sulfur dioxide and carbon dioxide in its xero- and aerogel state. The metallogel showed very good shape retention and could be extruded from molds in designed shapes. In a rheology experiment, the storage modulus was determined to be 1440 Pa, and the metallogel is elastic up to 3 Hz, breaking at strains higher than 0.3%. Additional metallogels utilizing the same ligand with a wide range of metal ions (Al(III), Fe(III), Co(III), In(III), and Hg(II)) have also been synthesized, and the aluminum and mixed aluminum-chromium derivative were also converted into its aerogel. The highly porous Cr, Al, and AlCr metal-organic aerogels proved stable against water vapor in a physisorption experiment and were used to model breakthrough curves for SO2/CO2 gas mixtures with the idealized adsorbed solution theory from their physisorption isotherms. The breakthrough simulation utilized SO2/CO2 equivalencies from a real world application and showed effective retention of SO2 from the gas mixture. Furthermore, the materials in this work exhibit the highest SO2 uptake values for metal-organic aerogels so far (up to 116.8 cm(3) g(-1), or 23.4 wt %).
机译:基于新的四羧基配体N-1,N-4-(二苯二甲酸)对苯酰胺与铬 - (III)组合的金属有机凝胶(Metallogel)已被转化为其Xero-和气凝胶,并证明具有优异的特异性染料中染料中染料的吸附性能,其中紫红色比另外两种其他染料,碱素和二硫氨酸蓝,以及其Xero和气凝胶状态下的水,二氧化硫和二氧化碳的速度更快。金属凝胶显示出非常好的形状保留,并且可以在设计的形状中从模具中挤出。在流变学实验中,测定储存模量为1440Pa,并且金属凝胶具有高达3Hz的弹性,在高于0.3%的菌株中断裂。还合成了利用具有宽范围金属离子(Al(III),Fe(III),CO(III),(III)和HG(II))的相同配体的额外金属凝胶,以及铝和混合铝 - 铬衍生物也转化为其气凝胶。高孔Cr,Al和Alcr金属 - 有机气凝胶在物理化实验中被证明是稳定的稳定的水蒸气,并用于模拟SO2 / CO2气体混合物的突破性曲线,其中来自其物理吸水器的理想化吸附溶液理论。突破性模拟利用来自现实世界的应用的SO2 / CO2等效物,并显示出从气体混合物中有效地保持SO2。此外,本作作品中的材料表现出最高的金属有机气凝胶的最高SO2摄取值(高达116.8cm(3 )g(-1)或23.4wt%)。

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