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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Water-Based Synthesis and Enhanced CO2 Capture Performance of Perfluorinated Cerium-Based Metal-Organic Frameworks with UiO-66 and MIL-140 Topology
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Water-Based Synthesis and Enhanced CO2 Capture Performance of Perfluorinated Cerium-Based Metal-Organic Frameworks with UiO-66 and MIL-140 Topology

机译:用UIO-66和MIL-140拓扑结构的全氟化铈基金属框架的水基合成及增强CO2捕获性能

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摘要

Reaction of cerium ammonium nitrate and tetrafluoroterephthalic acid in water afforded two new metal organic frameworks with UiO-66 [F4_UiO-66(Ce)] and MIL-140 [F4_MIL-140A(Ce)] topologies. The two compounds can be obtained in the same experimental conditions, just by varying the amount of acetic acid used as crystallization modulator in the synthesis. Both F4_UiO-66(Ce) and F4_MIL-140A(Ce) feature pores with size 8 angstrom, which classifies them as ultramicroporous. Combination of X-ray photoelectron spectroscopy and magnetic susceptibility measurements revealed that both compounds contain a small amount of Ce(III), which is preferentially accumulated near the surface of the crystallites. The CO2 sorption properties of F4_UiO-66(Ce) and F4_MIL-140A(Ce) were investigated, finding that they perform better than their Zr-based analogues. F4_MIL-140A(Ce) displays an unusual S-shaped isotherm with steep uptake increase at pressure 0.2 bar at 298 K. This makes F4_MIL-140A(Ce) exceptionally selective for CO2 over N-2: the calculated selectivity, according to the ideal adsorbed solution theory for a 0.15:0.85 mixture at 1 bar and 293 K, is higher than 1900, among the highest ever reported for metal organic frameworks. The calculated isosteric heat of CO2 adsorption is in the range of 38-40 kJ mol(-1), indicating a strong physisorptive character.
机译:硝酸铈和四氟苯二甲酸在水中的反应得到了与UIO-66 [F4_UIO-66(CE)]和MIL-140 [F4_MIL-140A(CE)]拓扑的两种新的金属有机骨架。两种化合物可以在相同的实验条件下获得,仅通过改变在合成中用作结晶调节剂的乙酸的量。 F4_UIO-66(CE)和F4_MIL-140A(CE)既具有尺寸<8埃尺寸的毛孔,其将它们分类为超微孔。 X射线光电子能谱和磁化率测量的组合显示,两种化合物含有少量CE(III),其优选地积聚在微晶的表面附近。研究了F4_UIO-66(CE)和F4_MIL-140A(CE)的CO2吸附性能,发现它们比其基于ZR的类似物更好。 F4_MIL-140A(CE)(CE)在298K处显示不具有陡峭摄取的不寻常的S形等温线,其在压力下增加。这使得F4_MIL-140A(CE)对N-2的CO 2特别选择性:计算的选择性。在1巴和293 k下,理想的吸附溶液理论为0.15:0.85混合物,高于1900,金属有机骨架的最高报道。 CO 2吸附的计算的基位热量在38-40kJ摩尔(-1)的范围内,表明强烈的物理化性质。

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