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Versatile rare earth hexanuclear clusters for the design and synthesis of highly-connected ftw-MOFs

机译:多功能稀土六核簇用于设计和合成高度连接的ftw-MOF

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摘要

A series of highly porous MOFs were deliberately targeted to contain a 12-connected rare earth hexanuclear cluster and quadrangular tetracarboxylate ligands. The resultant MOFs have an underlying topology of >ftw, and are thus (4,12)-c >ftw-MOFs. This targeted rare earth >ftw-MOF platform offers the potential to assess the effect of pore functionality and size, via ligand functionalization and/or expansion, on the adsorption properties of relevant gases. Examination of the gas adsorption properties of these compounds showed that the >ftw-MOF-2 analogues, constructed from rigid ligands with a phenyl, naphthyl, or anthracene core exhibited a relatively high degree of porosity. The specific surface areas and pore volumes of these analogs are amongst the highest reported for RE-based MOFs. Further studies revealed that the Y->ftw-MOF-2 shows promise as a storage medium for methane (CH4) at high pressures. Furthermore, Y->ftw-MOF-2 shows potential as a separation agent for the selective removal of normal butane (n-C4H10) and propane (C3H8) from natural gas (NG) as well as interesting properties for the selective separation of n-C4H10 from C3H8 or isobutane (iso-C4H10).
机译:故意将一系列高度多孔的MOF定位为包含12个连接的稀土六核簇和四边形四羧酸酯配体。生成的MOF具有> ftw 的基础拓扑,因此为(4,12)-c > ftw -MOF。这种有针对性的稀土元素> ftw -MOF平台可通过配体功能化和/或膨胀来评估孔功能和尺寸对相关气体吸附特性的影响。对这些化合物的气体吸附性能的研究表明,由具有苯基,萘基或蒽芯的刚性配体构成的> ftw -MOF-2类似物表现出较高的孔隙度。这些类似物的比表面积和孔体积在基于RE的MOF中报道的最高。进一步的研究表明,Y- > ftw -MOF-2有望在高压下作为甲烷(CH4)的存储介质。此外,Y- > ftw -MOF-2具有作为分离剂的潜力,可用于从天然气(NG)中选择性去除正丁烷(n-C4H10)和丙烷(C3H8)以及有趣的特性用于从C3H8或异丁烷(iso-C4H10)中选择性分离n-C4H10。

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