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首页> 外文期刊>ACS applied materials & interfaces >Removal of Particulate Matters with Isostructural Zr-Based Metal-Organic Frameworks Coated on Cotton: Effect of Porosity of Coated MOFs on Removal
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Removal of Particulate Matters with Isostructural Zr-Based Metal-Organic Frameworks Coated on Cotton: Effect of Porosity of Coated MOFs on Removal

机译:用棉花上涂覆的肌肉电ZR基金属骨架取出颗粒物质:涂层MOF孔隙率对去除的影响

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摘要

Effective removal of particulate matters (PMs) from air is very important for our safe environment, health, and sustainability. In this study, isostructural (with the same topology of fcu) Zr-metal-organic frameworks (Zr-MOFs) such as UiO-66, UiO-67, and DUT-52 (with different porosity) were coated onto cotton and utilized in PM removal from air to understand the contribution of MOFs in improving the performances of air filters. Moreover, UiO-66s with different porosities were also prepared under different conditions from the same reaction mixture. Experiments to remove PMs such as PM2.5 and PM10 showed a critical role of porosity of coated MOFs in the PM removal. Or, the removal efficiency or quality factor increased linearly with the increasing surface area of all the studied MOFs, irrespective of the applied linkers (for synthesizing different MOFs) and synthesis conditions (for different porosities of UiO-66s). Therefore, this work confirms, for the first time, that the porosity of MOF is one of the most important parameters to improve the performance of air filter (to remove PMs) that is modified with coated MOFs. Moreover, we could suggest why porous materials with small pores were effective in capturing PMs (larger in size than pores of porous materials) from air.
机译:有效地移除空气中的颗粒物质(PMS)对于我们的安全环境,健康和可持续性非常重要。在本研究中,涂覆到棉花上并在棉花上涂覆在棉花并使用中(具有不同的FCU的FCU晶体)Zr-Metal-Inform-Informs-Instrum-Instorms(Zr-Mofs)(Zr-mofs)(Zr-mofs)(以不同的孔隙率)(以不同的孔隙率)涂覆PM从空气中移除以了解MOF在提高空气过滤器性能方面的贡献。此外,在来自相同反应混合物的不同条件下也制备具有不同孔隙症的UIO-66。除去PM等PM2.5和PM10的实验表明PM在去除中涂覆的MOF的孔隙率的关键作用。或者,除了所研究的MOF的增加的表面积时,除去效率或质量因子与所施加的接头(用于合成不同的MOF)和合成条件(用于UIO-66s的不同孔隙率),可以随着所研究的MOF的增加而线性增加。因此,这项工作首次证实了MOF的孔隙率是提高用涂覆的MOF改性的空气过滤器(拆下PMS)的性能最重要的参数之一。此外,我们可以建议为什么小孔的多孔材料有效地捕获来自空气的PMS(比多孔材料的孔的尺寸)。

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