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Locating gases in porous materials:cryogenic loading of fuel-related gases into a Sc-based metal-organic framework under extreme pressures

机译:在多孔材料中定位气体:在极高的压力下将燃料相关气体低温装载到Sc基金属有机框架中

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摘要

An alternative approach to loading metal organic frameworks with gas molecules at high (kbar) pressures is reported. The technique, which uses liquefied gases as pressure transmitting media within a diamond anvil cell along with a single-crystal of a porous metal-organic framework, is demonstrated to have considerable advantages over other gas-loading methods when investigating host-guest interactions. Specifically, loading the metal-organic framework ScBDC with liquefied CO at 2 kbar reveals the presence of three adsorption sites, one previously unreported, and resolves previous inconsistencies between structural data and adsorption isotherms. A further study with supercritical CH at 3-25 kbar demonstrates hyperfilling of the ScBDC and two high-pressure displacive and reversible phase transitions are induced as the filled MOF adapts to reduce the volume of the system. The maximum gas uptake of porous MOFs was explored by using gases as pressure-transmitting media in high-pressure single-crystal diffraction experiments. A study with supercritical CH at 3-25 kbar demonstrates that two high-pressure phase transitions are induced as the filled MOF adapts to reduce the volume of the system.
机译:报道了一种在高压(kbar)下用气体分子加载金属有机骨架的替代方法。在研究宿主与客体之间的相互作用时,该技术将液化气体用作金刚石砧室内的压力传递介质,同时还使用了多孔金属-有机骨架的单晶,与其他气体加载方法相比,该技术具有明显优势。具体而言,在金属有机骨架ScBDC上以2 kbar的液化CO负载会显示三个吸附位点的存在,一个以前未报告,并解决了结构数据与吸附等温线之间的不一致问题。用3-25 kbar的超临界CH进行的进一步研究表明,ScBDC过度填充,并且由于填充的MOF减小了系统体积,因此引发了两个高压位移和可逆相变。在高压单晶衍射实验中,通过将气体用作压力传输介质,探索了多孔MOF的最大气体吸收量。一项在3-25 kbar的超临界CH的研究表明,由于填充的MOF可以减小系统体积,因此会引起两个高压相变。

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