微型多孔材料
金属有机骨架
乙炔
选择性
连接器
吸附
氢气储存
材料科学
水准点(测量)
巴(单位)
化学工程
化学
物理化学
有机化学
氢
计算机科学
物理
催化作用
复合材料
气象学
工程类
地理
操作系统
大地测量学
作者
Jia‐Wen Wang,Shu‐Cong Fan,Haipeng Li,Xianhui Bu,Yingying Xue,Quan‐Guo Zhai
标识
DOI:10.1002/anie.202217839
摘要
An ideal adsorbent for separation requires optimizing both storage capacity and selectivity, but maximizing both or achieving a desired balance remain challenging. Herein, a de-linker strategy is proposed to address this issue for metal-organic frameworks (MOFs). Broadly speaking, the de-linker idea targets a class of materials that may be viewed as being intermediate between zeolites and MOFs. Its feasibility is shown here by a series of ultra-microporous MOFs (SNNU-98-M, M=Mn, Co, Ni, Zn). SNNU-98 exhibit high volumetric C2 H2 uptake capacity under low and ambient pressures (175.3 cm3 cm-3 @ 0.1 bar, 222.9 cm3 cm-3 @ 1 bar, 298 K), as well as extraordinary selectivity (2405.7 for C2 H2 /C2 H4 , 22.7 for C2 H2 /CO2 ). Remarkably, SNNU-98-Mn can efficiently separate C2 H2 from C2 H2 /CO2 and C2 H2 /C2 H4 mixtures with a benchmark C2 H2 /C2 H4 (1/99) breakthrough time of 2325 min g-1 , and produce 99.9999 % C2 H4 with a productivity up to 64.6 mmol g-1 , surpassing values of reported MOF adsorbents.
科研通智能强力驱动
Strongly Powered by AbleSci AI