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含游离羧酸的UiO-66型金属有机框架:通过氢键作用的适用于水相和非水相的多功能吸附剂

UiO-66-Type Metal-Organic Framework with Free Carboxylic Acid: Versatile Adsorbents via H-bond for Both Aqueous and Nonaqueous Phases.

作者信息

Song Ji Yoon, Ahmed Imteaz, Seo Pill Won, Jhung Sung Hwa

机构信息

Department of Chemistry and Green-Nano Materials Research Center, Kyungpook National University , Daegu 41566, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2016 Oct 12;8(40):27394-27402. doi: 10.1021/acsami.6b10098. Epub 2016 Oct 3.

Abstract

The metal-organic framework (MOF) UiO-66 was synthesized in one step from zirconium chloride and isophthalic acid (IPA), together with the usual link material, terephthalic acid (TPA). UiO-66 with free -COOH can be obtained in a facile way by replacing up to 30% of the TPA with IPA. However, the chemical and thermal stability of the synthesized MOFs decreased with increasing IPA content used in the syntheses, suggesting an increase in the population of imperfect bonds in the MOFs because of the asymmetrical structure of IPA. The obtained MOFs with free -COOH were applied in liquid-phase adsorptions from both water and model fuel to not only estimate the potential applications but also confirm the presence of -COOH in the MOFs. The adsorbed amounts of several organics (triclosan and oxybenzone from water and indole and pyrrole from fuel) increased monotonously with increasing IPA content applied in MOF synthesis (or -COOH in the MOFs). The favorable contribution of free -COOH to adsorption can be explained by H-bonding, and the direction of H-bonds (adsorbates: H donor; MOFs: H acceptor) was confirmed by the adsorption of oxybenzone in a wide pH range. The versatile applications of the MOFs with -COOH in adsorptions from both polar and nonpolar phases are remarkable considering that hydrophobic and hydrophilic adsorbents are generally required for water and fuel purification, respectively. Finally, the presence of free -COOH in the MOFs was confirmed by liquid-phase adsorptions together with general Fourier transform infrared analyses and decreased chemical and thermal stability.

摘要

金属有机框架材料(MOF)UiO - 66由氯化锆、间苯二甲酸(IPA)以及常用的连接材料对苯二甲酸(TPA)一步合成。通过用IPA取代高达30%的TPA,可以简便地获得带有游离 -COOH的UiO - 66。然而,合成的MOF的化学和热稳定性随着合成过程中使用的IPA含量增加而降低,这表明由于IPA的不对称结构,MOF中不完全键的数量增加。所获得的带有游离 -COOH的MOF被应用于从水和模拟燃料的液相吸附中,不仅用于评估潜在应用,还用于确认MOF中 -COOH的存在。几种有机物(水中的三氯生和氧苯酮以及燃料中的吲哚和吡咯)的吸附量随着MOF合成中使用的IPA含量(或MOF中的 -COOH)增加而单调增加。游离 -COOH对吸附的有利贡献可以通过氢键来解释,并且通过在较宽pH范围内氧苯酮的吸附确认了氢键的方向(吸附质:氢供体;MOF:氢受体)。考虑到水和燃料净化通常分别需要疏水和亲水吸附剂,带有 -COOH的MOF在极性和非极性相吸附中的广泛应用非常显著。最后,通过液相吸附以及常规傅里叶变换红外分析和降低的化学与热稳定性,确认了MOF中游离 -COOH的存在。

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