Synthesis and Thio-Functionalization of Metal Organic Frameworks of Isonicotinate Ligands and their Application for Fluorescein Removal from Aqueous Solution

Ajayi Samson Abidemi
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Abstract

Mechanochemical syntheses of four (4) know metal organic frameworks (MOFs) were obtained by grinding stoichiometric amounts of metal salts [Zn (II) and Cu (II)] and corresponding carboxylate ligands [Fumaric and Isonicotinic acids] in a mortar with a pestle. Also, Solvent-based syntheses of MOFs were carried out with the reaction of metal salts and each carboxylate ligand by mixing in the presence of solvents. The compounds were characterized by the comparison of melting point, elemental analysis, FT-IR spectroscopy and XRPD results with those of the free ligands and literature. The analytical and spectroscopic data of the compounds prepared via the two different methods gave the expected product. The presence of coordinatively unsaturated metal centers in the synthesized MOFs provides an accessible way to selectively functionalize them through coordination bonds. In this work, thiol-functionalization of MOFs were described by choosing six well known MOFs in which three (3) are Zn-based while the other three (3) are Cu-based MOF, by a facile coordination based postsynthetic strategy. The obtained thiol-functionalized MOFs were characterized by powder X-ray diffraction, CHN and infrared spectroscopy. The analytical and spectroscopic data of the unmodified and modified compound were different. A series of [Cu (Ina)2] samples stoichiometrically decorated with thiol groups has been prepared through coordination bonding of coordinatively unsaturated metal centers with –SH group in thioglycolic acid. [Cu (Ina)2]. H2O and [Cu(Ina)2]-TH were investigated for the adsorptive removal of fluorescein from aqueous solution. The parameters that affect the dye sorption such as contact time, solution pH, initial fluorescein concentration and temperature, have been investigated and optimized conditions determined at PH of 7.8. Dubinin–Radushkevich Equilibrium isotherm studies were used to evaluate the maximum sorption capacity of MOFs and experimental results showed that the removal efficiency decreases in the order of [Cu(Ina)2]-TH > [Cu(Ina)2].H2O both in adsorption rate and adsorption capacity. The Langmuir, Freundlich, Temkin and Dubinin Radushkevich models have been applied and the data correlate well with Dubinin Radushkevich model. The adsorption mechanism may be explained with a simple electrostatic interaction and π- π interaction. Finally, it can be suggested that modification of MOFs can be use to improve their adsorption capacity and rate, making them a better adsorbent to remove emerging dyes contaminants from waste water.
异烟酸配体金属有机框架的合成和硫功能化及其在从水溶液中去除荧光素中的应用
通过将等量的金属盐[锌(II)和铜(II)]和相应的羧酸配体[富马酸和异烟酸]在研钵中用杵研磨,获得了四种已知金属有机框架(MOFs)的机械化学合成。此外,在有溶剂存在的情况下,通过混合金属盐和每种羧酸配体的反应,进行了基于溶剂的 MOFs 合成。通过将熔点、元素分析、傅立叶变换红外光谱和 XRPD 结果与游离配体和文献结果进行比较,对化合物进行了表征。通过两种不同方法制备的化合物的分析和光谱数据都得到了预期的产物。 合成的 MOFs 中存在配位不饱和金属中心,这为通过配位键对其进行选择性官能化提供了一条便捷途径。在这项工作中,我们选择了六种众所周知的 MOF,其中三(3)种是 Zn 基 MOF,另外三(3)种是 Cu 基 MOF,通过一种基于配位的简便后合成策略,对 MOF 进行了巯基官能化。通过粉末 X 射线衍射、CHN 和红外光谱对获得的硫醇官能化 MOFs 进行了表征。未修饰和修饰化合物的分析和光谱数据各不相同。 通过配位不饱和金属中心与硫代乙醇酸中的 -SH 基团配位键合,制备出了一系列按比例修饰了硫醇基团的 [Cu (Ina)2] 样品。[Cu (Ina)2].H2O和[Cu(Ina)2]-TH进行了从水溶液中吸附去除荧光素的研究。研究了影响染料吸附的参数,如接触时间、溶液 pH 值、初始荧光素浓度和温度,并确定了 PH 值为 7.8 时的优化条件。实验结果表明,无论是吸附速率还是吸附容量,去除效率都按照[Cu(Ina)2]-TH > [Cu(Ina)2].H2O的顺序递减。应用了 Langmuir、Freundlich、Temkin 和 Dubinin Radushkevich 模型,数据与 Dubinin Radushkevich 模型有很好的相关性。吸附机理可以用简单的静电作用和 π- π 作用来解释。最后,可以建议对 MOFs 进行改性,以提高其吸附能力和吸附速率,使其成为去除废水中新出现的染料污染物的更好的吸附剂。
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