Demir Hakan, Keskin Seda
Department of Chemical and Biological Engineering, Koc University 34450 Istanbul Turkey
Mol Syst Des Eng. 2021 Jun 25;6(8):627-642. doi: 10.1039/d1me00060h. eCollection 2021 Aug 2.
Zirconium metal-organic frameworks (MOFs) can be promising adsorbents for various applications as they are highly stable in different chemical environments. In this work, a collection of Zr-MOFs comprised of more than 100 materials is screened for CF/CH, CH/H, and CH/N separations using atomistic-level simulations. The top three MOFs for the CF/CH separation are identified as PCN-700-BPDC-TPDC, LIFM-90, and BUT-67 exhibiting CF/CH adsorption selectivities of 4.8, 4.6, and 4.7, CF working capacities of 2.0, 2.0, and 2.1 mol kg, and regenerabilities of 85.1, 84.2, and 75.7%, respectively. For the CH/H separation, MOF-812, BUT-67, and BUT-66 are determined to be the top performing MOFs demonstrating CH/H selectivities of 61.6, 36.7, and 46.2, CH working capacities of 3.0, 4.1, and 3.4 mol kg, and CH regenerabilities of 70.7, 82.7, and 74.7%, respectively. Regarding the CH/N separation, BUT-67, Zr-AbBA, and PCN-702 achieving CH/N selectivities of 4.5, 3.4, and 3.8, CH working capacities of 3.6, 3.9, and 3.5 mol kg, and CH regenerabilities of 81.1, 84.0, and 84.5%, in successive order, show the best overall separation performances. To further elucidate the adsorption in top performing adsorbents, the adsorption sites in these materials are analyzed using radial distribution functions and adsorbate density profiles. Finally, the water affinities of Zr-MOFs are explored to comment on their practical use in real gas separation applications. Our findings may inspire future studies probing the adsorption/separation mechanisms and performances of Zr-MOFs for different gases.
锆基金属有机框架材料(MOFs)在不同化学环境中具有高度稳定性,有望成为适用于各种应用的吸附剂。在这项工作中,使用原子水平模拟筛选了由100多种材料组成的一系列Zr-MOFs,用于CF/CH、CH/H和CH/N分离。CF/CH分离性能最佳的三种MOFs被确定为PCN-700-BPDC-TPDC、LIFM-90和BUT-67,其CF/CH吸附选择性分别为4.8、4.6和4.7,CF工作容量分别为2.0、2.0和2.1 mol/kg,再生能力分别为85.1%、84.2%和75.7%。对于CH/H分离,MOF-812、BUT-67和BUT-66被确定为性能最佳的MOFs,其CH/H选择性分别为61.6、36.7和46.2,CH工作容量分别为3.0、4.1和3.4 mol/kg,CH再生能力分别为70.7%、82.7%和74.7%。关于CH/N分离,BUT-67、Zr-AbBA和PCN-702的CH/N选择性依次为4.5、3.4和3.8,CH工作容量分别为3.6、3.9和3.5 mol/kg,CH再生能力分别为81.1%、84.0%和84.5%,整体分离性能最佳。为了进一步阐明性能最佳的吸附剂中的吸附情况,使用径向分布函数和吸附质密度分布对这些材料中的吸附位点进行了分析。最后,探索了Zr-MOFs对水的亲和力,以评价它们在实际气体分离应用中的实际用途。我们的研究结果可能会激发未来对Zr-MOFs对不同气体的吸附/分离机制和性能的研究。