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High-internal-phase emulsions stabilized by metal-organic frameworks and derivation of ultralight metal-organic aerogels

机译:金属有机骨架稳定的高内相乳液和超轻金属有机气凝胶的衍生

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摘要

To design high-internal-phase emulsion (HIPE) systems is of great interest from the viewpoints of both fundamental researches and practical applications. Here we demonstrate for the first time the utilization of metal-organic framework (MOF) for HIPE formation. By stirring the mixture of water, oil and MOF at room temperature, the HIPE stabilized by the assembly of MOF nanocrystals at oil-water interface could be formed. The MOF-stabilized HIPE provides a novel route to produce highly porous metal-organic aerogel (MOA) monolith. After removing the liquids from the MOF-stabilized HIPE, the ultralight MOA with density as low as 0.01 g·cm−3 was obtained. The HIPE approach for MOA formation has unique advantages and is versatile in producing different kinds of ultralight MOAs with tunable porosities and structures.
机译:从基础研究和实际应用的观点出发,设计高内相乳液(HIPE)系统是非常令人感兴趣的。在这里,我们首次证明了金属有机骨架(MOF)在HIPE形成中的利用。通过在室温下搅拌水,油和MOF的混合物,可以形成通过MOF纳米晶体在油-水界面处组装而稳定的HIPE。 MOF稳定的HIPE为生产高度多孔的金属有机气凝胶(MOA)整体材料提供了一条新颖的途径。从MOF稳定化的HIPE中除去液体后,获得了密度低至0.01μg·cm -3 的超轻MOA。用于MOA形成的HIPE方法具有独特的优势,并且在生产各种具有可调孔隙和结构的超轻MOA方面具有多种用途。

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