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A facile post-synthetic modification method to improve hydrothermal stability and CO2 selectivity of CuBTC metal-organic framework

机译:一种简便的合成后改性方法,用于提高CuBTC金属 - 有机骨架的水热稳定性和CO2选择性

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摘要

Practical applications require hydrothermally stable metal-organic frameworks (MOFs). Achieving stable MOFs in the presence of water or humidity is challenging, especially for MOFs with open metals sites (OMSs) due to the high affinity of water molecules towards OMSs. A straightforward solution to tackling this problem is to protect OMSs in the porous structure of MOFs. A facile post-synthetic modification (PSM) method for the synthesis of molecular glycine-doped CuBTC MOF (BTC = benzene-1,3,5-tricarboxylic acid) was developed in this study. Developed materials, i.e. Gly-CuBTC MOFs, were characterized using various characterization techniques and evaluated using single-component gas (CO2 and N2) adsorption and dynamic water vapor adsorption experiments. The economical dopant of molecular glycine with amine and carboxyl group was found to be able to saturate OMSs in the parent CuBTC MOF leading to the improved hydrothermal stability and CO2:N2 selectivity. It was also found that the adsorption capacity, CO2:N2 selectivity and hydrothermal stability of Gly-CuBTC MOFs depend on the percentage of saturation of OMSs in the parent MOF.
机译:实际应用需要水热稳定的金属有机骨架(MOF)。在水或湿气存在的情况下实现稳定的MOF具有挑战性,特别是对于具有开放金属位点(OMS)的MOF,因为水分子对OMS的亲和力高。解决此问题的直接方法是在MOF的多孔结构中保护OMS。在这项研究中,开发了一种简便的合成后修饰(PSM)方法,用于合成分子甘氨酸掺杂的CuBTC MOF(BTC =苯-1,3,5-三羧酸)。使用各种表征技术对已开发的材料Gly-CuBTC MOF进行了表征,并使用单组分气体(CO2和N2)吸附和动态水蒸气吸附实验对其进行了评估。发现具有胺和羧基的分子甘氨酸的经济掺杂剂能够使母体CuBTC MOF中的OMS饱和,从而改善了水热稳定性和CO2:N2选择性。还发现,Gly-CuBTC MOF的吸附容量,CO2:N2选择性和水热稳定性取决于母体MOF中OMS的饱和百分比。

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