吸附
气体分离
材料科学
金属有机骨架
阳离子聚合
离子键合
分子
选择性
纳米技术
化学物理
化学工程
离子
化学
催化作用
物理化学
膜
有机化学
高分子化学
生物化学
工程类
作者
Yuanmeng Tian,Zeyu Tao,Mingzhe Sun,Tianqi Wang,Liangchun Li,Qinfen Gu,Jin Shang
出处
期刊:Small
[Wiley]
日期:2024-03-26
卷期号:20 (27)
标识
DOI:10.1002/smll.202400064
摘要
Achieving high gas selectivity is challenging when dealing with gas pairs of similar size and physiochemical properties. The "molecular trapdoor" mechanism discovered in zeolites holds promise for highly selective gas adsorption separation but faces limitations like constrained pore volume and slow adsorption kinetics. To address these challenges, for the first time, a flexible metal-organic framework (MOF) featuring 1D channels and functioning as a "molecular trapdoor" material is intoduced. Extra-framework anions act as "gate-keeping" groups at the narrowest points of channels, permitting gas admissions via gate opening induced by thermal/pressure stimuli and guest interactions. Different guest molecules induce varied energy barriers for anion movement, enabling gas separation based on distinct threshold temperatures for gas admission. The flexible framework of Pytpy MOFs, featuring swelling structure with rotatable pyridine rings, facilitates faster gas adsorption than zeolite. Analyzing anion properties of Pytpy MOFs reveals a guiding principle for selecting anions to tailor threshold gas admission. This study not only overcomes the kinetic limitations related to gas admission in the "molecular trapdoor" zeolites but also underscores the potential of developing MOFs as molecular trapdoor adsorbents, providing valuable insights for designing ionic MOFs tailored to diverse gas separation applications.
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