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Size- and morphology-controllable synthesis of MIL-96 (Al) by hydrolysis and coordination modulation of dual aluminium source and ligand systems

机译:通过双铝源和配体系统的水解和配位调节,合成MIL-96(Al)的尺寸和形貌可控的合成

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摘要

In this paper, an efficient method to fabricate Al-based metal organic framework (Al-MOF) MIL-96 crystals with controllable size and morphology, by mixing other forms of reactants to replace the coordination modulators or capping agents, is presented. The size and morphology of the MIL-96 crystals can be selectively varied by simply altering the ratio of dual reactants via their hydrolysis reaction. All the samples were characterized by X-ray powder diffraction (XRD), scanning electron microscopy (SEM), Fourier Transform Infrared (FT-IR) spectroscopy, thermogravimetric analysis (TGA) and nitrogen sorption. Then based on the BFDH theory, a mechanism for the impact of hydrolysis of reactants on the crystal size and morphology is presented and discussed. We also evaluated the performance of these MOFs as sorbents for capturing CO2, and they all show enhanced adsorption properties compared with the bulk material, displaying high adsorption capacities on CO2 at atmospheric pressure and ambient temperature.
机译:本文提出了一种有效的方法,通过混合其他形式的反应物来代替配位调节剂或封端剂,从而制得尺寸和形态可控的Al-MOF MIL-96铝基晶体。 MIL-96晶体的大小和形态可以通过水解反应简单地改变双反应物的比例来有选择地改变。所有样品均通过X射线粉末衍射(XRD),扫描电子显微镜(SEM),傅立叶变换红外(FT-IR)光谱,热重分析(TGA)和氮吸附进行了表征。然后基于BFDH理论,提出并讨论了反应物水解对晶体尺寸和形貌的影响机理。我们还评估了这些MOF作为吸附剂捕获CO2的性能,与散装材料相比,它们均显示出增强的吸附性能,在大气压和环境温度下对CO2表现出高吸附能力。

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