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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Gas Adsorption Characteristics of Metal-Organic Frameworks via Quartz Crystal Microbalance Techniques
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Gas Adsorption Characteristics of Metal-Organic Frameworks via Quartz Crystal Microbalance Techniques

机译:石英晶体微天平技术对金属有机骨架的气体吸附特性

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摘要

We report an experimental investigation of the adsorption properties of two important small-pore metal-organic framework (MOF) materials recently identified for gas separation applications, through the development and use of a high-pressure/high-temperature quartz crystal microbalance (QCM) device. In particular, we characterize in detail the CO2, CH4, and N2 adsorption characteristics of the MOFs Cu(4,4'-(hexafluoroisopropylidene)bisbenzoate)_(1.5) (referred to as Cu-hfipbb) and zeolitic imidazolate framework-90 (ZIF-90). We first describe the construction of a QCM-based adsorption measurement apparatus. Single-component adsorption isotherms of CO2, CH4, and N2 in the two MOFs were then measured at temperatures ranging from 30 to 70 °C and pressures ranging from 0.3 to 110 psi. In both materials, the order of adsorption strength is CO2 > CH4 > N2. We find that adsorption in the 1-D channels of Cu-hfipbb can be well described by a single-site Langmuir model. On the other hand, adsorption in ZIF-90 follows a more complex behavior, commensurate with its pore structure consisting of large porous cages connected in three dimensions by small windows. The nongravimetric QCM-based measurement techniques are shown to be a valuable microanalytical tool for the study of molecular adsorption in MOFs.
机译:我们报告了通过开发和使用高压/高温石英晶体微天平(QCM)对最近用于气体分离应用的两种重要的小孔金属有机骨架(MOF)材料进行吸附性能的实验研究设备。特别是,我们详细描述了MOF的Cu(4,4'-(六氟异亚丙基)双苯甲酸酯)_(1.5)(称为Cu-hfipbb)和咪唑沸石90-( ZIF-90)。我们首先描述基于QCM的吸附测量设备的构造。然后在30至70°C的温度和0.3至110 psi的压力下测量两个MOF中CO2,CH4和N2的单组分吸附等温线。在这两种材料中,吸附强度的顺序为CO2> CH4> N2。我们发现,Cu-hfipbb的1-D通道中的吸附可以通过单点Langmuir模型很好地描述。另一方面,ZIF-90的吸附行为更为复杂,其孔隙结构由大型多孔笼子组成,这些笼子通过小窗口以三维连接。基于QCM的非重力测量技术被证明是用于研究MOF中分子吸附的有价值的微观分析工具。

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