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Common but differentiated flexible MIL-53(Al): role of metal sources in synthetic protocol for tuning the adsorption characteristics

机译:常见但差异化的灵活MIL-53(AL):金属源在合成方案中的作用,用于调整吸附特性

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摘要

The property tuning of metal-organic frameworks (MOFs) has been an active pursuit in both academia and industry. In this work, structural properties of a promising flexible MOF, MIL-53(Al), were finely tuned via a metal source-based synthetic protocol. Varying degrees of framework flexibility and hydrophilicity have been achieved using water-insoluble metal sources, such as alumina, aluminum hydroxide, boehmite, and traditional aluminum nitrate for synthesis. MIL-53(Al) prepared from alumina was the most rigid and hydrophilic as is confirmed by powder X-ray diffraction, vapor adsorption, and diffuse reflectance infrared Fourier transform spectroscopy. Magic-angle spinning nuclear magnetic resonance results revealed that utilizing insoluble metal sources entailed different reaction mechanisms during MOF synthesis and introduced uncoordinated carboxyl into the framework. Through selection of metal sources, the adsorption characteristics of MIL-53(Al) were successfully tuned. The samples prepared from insoluble metal sources showed increased adsorption capacities toward iodine and bisphenol A. The maximum capacity toward iodine in water and n-hexane was one and six times higher than that of conventional MIL-53(Al), respectively. This finding offers excellent prospects for the structural regulation and property tuning of MOFs.
机译:金属有机框架(MOFS)的财产调整是学术界和工业的积极追求。在这项工作中,通过基于金属源的合成方案精细调整了有前途的柔性MOF,MIL-53(A1)的结构性。使用水不溶性金属来源,例如氧化铝,氢氧化铝,勃姆石和传统硝酸铝进行合成,实现了不同程度的框架灵活性和亲水性。由氧化铝制备的MIL-53(A1)是通过粉末X射线衍射,蒸气吸附和漫反射红外傅里叶变换光谱证实的最刚性和亲水性最刚性和亲水性。魔法角旋转核磁共振结果显示,利用不溶性金属源在MOF合成期间引起不同的反应机制,并将未使用的羧基引入框架中。通过选择金属来源,成功调整MIL-53(Al)的吸附特性。由不溶性金属源制备的样品显示出对碘和双酚A的吸附能力增加。水中碘和正己烷中的最大容量分别高于常规MIL-53(A1)的六倍。这一发现为MOF的结构监管和财产调整提供了良好的前景。

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  • 来源
    《Journal of Materials Science》 |2019年第8期|共12页
  • 作者单位

    Tongji Univ Coll Environm Sci &

    Technol State Key Lab Pollut Control &

    Resource Reuse Shanghai 200092 Peoples R China;

    Tongji Univ Coll Environm Sci &

    Technol State Key Lab Pollut Control &

    Resource Reuse Shanghai 200092 Peoples R China;

    Tongji Univ Coll Environm Sci &

    Technol State Key Lab Pollut Control &

    Resource Reuse Shanghai 200092 Peoples R China;

    Tongji Univ Coll Environm Sci &

    Technol State Key Lab Pollut Control &

    Resource Reuse Shanghai 200092 Peoples R China;

    East China Normal Univ Shanghai Key Lab Magnet Resonance Sch Phys &

    Mat Sci Shanghai 200062 Peoples R China;

    Tongji Univ Coll Environm Sci &

    Technol State Key Lab Pollut Control &

    Resource Reuse Shanghai 200092 Peoples R China;

    Tongji Univ Coll Environm Sci &

    Technol State Key Lab Pollut Control &

    Resource Reuse Shanghai 200092 Peoples R China;

    Tongji Univ Coll Environm Sci &

    Technol State Key Lab Pollut Control &

    Resource Reuse Shanghai 200092 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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