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首页> 外文期刊>ACS applied materials & interfaces >Biporous Metal-Organic Framework with Tunable CO2/CH4 Separation Performance Facilitated by Intrinsic Flexibility
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Biporous Metal-Organic Framework with Tunable CO2/CH4 Separation Performance Facilitated by Intrinsic Flexibility

机译:具有可调谐CO2 / CH4分离性能的双孔金属有机框架,通过内在灵活性促进

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摘要

In this work, we report the synthesis of SION-8, a novel metal-organic framework (MOF) based on Ca(II) and a tetracarboxylate ligand TBAPy(4-) endowed with two chemically distinct types of pores characterized by their hydrophobic and hydrophilic properties. By altering the activation conditions, we gained access to two bulk materials: the fully activated SION-8F and the partially activated SION-8P with exclusively the hydrophobic pores activated. SION-8P shows high affinity for both CO2 (Q(st) = 28.4 kJ/mol) and CH4 (Q(st) = 21.4 kJ/mol), while upon full activation, the difference in affinity for CO2 (Q(st) = 23.4 kJ/mol) and CH4 (Q(st) = 16.0 kJ/mol) is more pronounced. The intrinsic flexibility of both materials results in complex adsorption behavior and greater adsorption of gas molecules than if the materials were rigid. Their CO2/CH4 separation performance was tested in fixed-bed breakthrough experiments using binary gas mixtures of different compositions and rationalized in terms of molecular interactions. SION-8F showed a 40-160% increase (depending on the temperature and the gas mixture composition probed) of the CO2/CH4 dynamic breakthrough selectivity compared to SION-8P, demonstrating the possibility to rationally tune the separation performance of a single MOF by manipulating the stepwise activation made possible by the MOF's biporous nature.
机译:在这项工作中,我们报告了基于Ca(II)的新型金属 - 有机骨架(MOF)和四羧酸盐配体Tbapy(4-)的新型金属 - 有机骨架(MOF)的合成,其具有其疏水性的两个化学上不同类型的孔隙亲水性。通过改变活化条件,我们获得了两种散装材料:完全活化的SiON-8F和部分活化的SiON-8P,其具有激活的疏水性孔隙。 Sion-8p对CO 2(Q(ST)= 28.4kJ / mol)和CH 4(Q(ST)= 21.4kJ / mol)表示高亲和力,同时在全激活时,CO2的亲和力差异(Q(ST) = 23.4 kJ / mol)和CH4(q(st)= 16.0 kj / mol)更加明显。两种材料的内在灵活性导致复杂的吸附行为和更大的气体分子吸附而不是材料刚性。它们在使用不同组合物的二元气体混合物的固定气体混合物中测试其CO 2 / CH4分离性能,并在分子相互作用方面合理化。 Sion-8F显示40-160%的增加(取决于CO2 / CH4动态突破选择性的CO 2 / CH4动态突破选择性的增加,展示了合理调整单个MOF的分离性能的可能性操纵MOF的双孔性质可以实现逐步激活。

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