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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Diamine-appended metal-organic frameworks: enhanced formaldehyde-vapor adsorption capacity, superior recyclability and water resistibility
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Diamine-appended metal-organic frameworks: enhanced formaldehyde-vapor adsorption capacity, superior recyclability and water resistibility

机译:附有二胺的金属-有机骨架:增强的甲醛蒸气吸附能力,出色的可回收性和耐水性

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Capturing formaldehyde (HCHO) from indoor air with porous adsorbents still faces challenges due to their low uptake capacity, difficult regeneration, and especially, the sorption capacity reduction that is caused by the competitive adsorption of H2O when exposed to a humid atmosphere. In this work, MIL-101 is modified with ethylenediamine (ED) on its open-metal sites to substantially improve the HCHO adsorption properties. The HCHO uptake capacity of modified MIL-101 can be up to 5.49 mmol g(-1) in this study, which is among the highest-levels of various adsorbents reported thus far. Moreover, this modification both improved the material's recyclability and water resistibility, allowing for cyclic and selective tests with stable adsorption capacities, revealing the potential utility of amine-modified MOFs for indoor air purification.
机译:由于其吸收能力低,难以再生,尤其是暴露于潮湿环境中时H2O的竞争性吸附引起的吸附能力降低,使用多孔吸附剂从室内空气中捕获甲醛(HCHO)仍然面临挑战。在这项工作中,MIL-101在其裸露金属位点上用乙二胺(ED)进行了改性,以显着提高HCHO的吸附性能。在这项研究中,改性的MIL-101的HCHO吸收能力可以高达5.49 mmol g(-1),这是迄今为止报道的各种吸附剂的最高水平。此外,这种改性方法提高了材料的可回收性和耐水性,允许进行具有稳定吸附能力的循环和选择性测试,从而揭示了胺改性的MOF在室内空气净化中的潜在效用。

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