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Ultrathin metal–organic framework membrane production by gel–vapour deposition

机译:凝胶蒸气沉积法生产超薄金属有机骨架膜

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摘要

Ultrathin, molecular sieving membranes composed of microporous materials offer great potential to realize high permeances and selectivities in separation applications, but strategies for their production have remained a challenge. Here we show a route for the scalable production of nanometre-thick metal–organic framework (MOF) molecular sieving membranes, specifically via gel–vapour deposition, which combines sol–gel coating with vapour deposition for solvent-/modification-free and precursor-/time-saving synthesis. The uniform MOF membranes thus prepared have controllable thicknesses, down to ~17 nm, and show one to three orders of magnitude higher gas permeances than those of conventional membranes, up to 215.4 × 10−7 mol m−2 s−1 Pa−1 for H2, and H2/C3H8, CO2/C3H8 and C3H6/C3H8 selectivities of as high as 3,400, 1,030 and 70, respectively. We further demonstrate the in situ scale-up processing of a MOF membrane module (30 polymeric hollow fibres with membrane area of 340 cm2) without deterioration in selectivity.
机译:由微孔材料组成的超薄分子筛膜为在分离应用中实现高渗透性和选择性提供了巨大的潜力,但其生产策略仍然是一个挑战。在这里,我们展示了大规模生产纳米级金属-有机骨架(MOF)分子筛膜的途径,特别是通过凝胶-气相沉积,该工艺将溶胶-凝胶涂层与气相沉积相结合,实现了无溶剂/无改性和前体- /省时的合成。由此制得的均匀MOF膜具有可控制的厚度,低至约17 nm,并且显示出比常规膜高的气体渗透率达1-3个数量级,高达215.4×10 −7 mol m < sup> −2 s −1 Pa −1 对H2的选择性高达3,400,H2 / C3H8,CO2 / C3H8和C3H6 / C3H8的选择性1,030和70。我们进一步证明了MOF膜组件(30根聚合物中空纤维,膜面积为340scm 2 )的原位放大工艺,并且不会降低选择性。

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