State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou 310027, China.
Department of Chemistry, University of Texas at San Antonio, One UTSA Circle, San Antonio, Texas 78249-0698, United States.
J Am Chem Soc. 2022 Feb 23;144(7):3200-3209. doi: 10.1021/jacs.1c12873. Epub 2022 Feb 9.
The discovery of high-performance adsorbents for highly efficient separation of xenon from krypton is an important but challenging task in the chemical industry due to their similar size and inert spherical nature. Herein, we report two robust and radiation-resistant Hofmann-type MOFs, Co(pyz)[Ni(CN)] and Co(pyz)[Pd(CN)] (termed as ZJU-74a-Ni and ZJU-74a-Pd), featuring oppositely adjacent open metal sites and perfect pore sizes (4.1 and 3.8 Å) comparable to the kinetic diameter of xenon (4.047 Å), affording the benchmark binding affinity for polarizable Xe gas. These materials thus exhibit both record-high Xe uptake capacities (89.3 and 98.4 cm cm at 296 K and 0.2 bar) and Xe/Kr selectivities (74.1 and 103.4) at ambient conditions, all of which are the highest among all the state-of-the-art materials reported so far. The locations of Xe molecules within ZJU-74a-Ni have been visualized by single-crystal X-ray diffraction studies, in which two oppositely adjacent metal centers combined with the right aperture size can construct a unique sandwich-like binding site to offer unprecedented and ultrastrong Ni-Xe-Ni interactions with xenon, thus leading to the record Xe capture capacity and selectivity. The excellent separation capacity of ZJU-74a-Pd was verified by breakthrough experiments for Xe/Kr gas mixtures, providing both unprecedentedly high xenon uptake capacity (4.63 mmol cm) and krypton productivity (214 cm g).
由于氙气和氪气的尺寸相似且具有惰性的球形性质,因此从氪气中高效分离氙气的高性能吸附剂的发现是化学工业中的一项重要但具有挑战性的任务。在此,我们报道了两种坚固且耐辐射的霍夫曼型 MOF,Co(pyz)[Ni(CN)]和 Co(pyz)[Pd(CN)](分别称为 ZJU-74a-Ni 和 ZJU-74a-Pd),它们具有相反的相邻开放金属位和完美的孔径(4.1 和 3.8 Å),与氙气的动力学直径(4.047 Å)相当,提供了对可极化 Xe 气体的基准结合亲和力。这些材料因此在环境条件下表现出超高的 Xe 吸附容量(296 K 和 0.2 bar 时为 89.3 和 98.4 cm cm)和 Xe/Kr 选择性(74.1 和 103.4),这在迄今为止报道的所有最先进的材料中都是最高的。通过单晶 X 射线衍射研究可视化了 ZJU-74a-Ni 内 Xe 分子的位置,其中两个相反的相邻金属中心与合适的孔径大小相结合,可以构建一个独特的三明治状结合位点,提供前所未有的超强 Ni-Xe-Ni 相互作用,从而导致创纪录的 Xe 捕获容量和选择性。ZJU-74a-Pd 的优异分离能力通过 Xe/Kr 气体混合物的突破实验得到验证,提供了前所未有的高氙气吸附容量(4.63 mmol cm)和氪气产率(214 cm g)。