Unraveling the sorption mechanism of industrial dyes onto Zr-based MOFs: computational and experimental modelling for highly efficient removal†

IF 5.2 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials Advances Pub Date : 2024-11-25 DOI:10.1039/D4MA00818A
Kora Lucresse Tiomo Nguena, Cyrille Ghislain Fotsop, Aurelien Bopda, Donald Raoul Tchuifon Tchuifon, Fredy Harcel Kamgang Djioko, Alvine Mirabelle Soukoua Ngueabouo, Chinyere Ada Madu, Fabian I. Ezema and Emeka Emmanuel Oguzie
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Abstract

The ability of NH2-UiO-66 to remove the cationic dye rhodamine B (RhB) and the anionic dyes indigo carmine (IC) and orange 2 (O2) was evaluated. XRD, SEM/EDX, FTIR, N2 sorption and TG/DTG analytical techniques were used to evaluate the physicochemical properties of NH2-UiO-66 produced by the solvothermal method. For IC and O2 dyes, the NH2-UiO-66 material showed an adsorption capacity of 265.8 mg g−1 and 229.8 mg g−1, respectively, while for RhB it was 91.6 mg g−1. The most accurate model was Toth's isothermal model with R2 > 0.90. The Elovich kinetic model provided the most accurate fit, with an R2 > 0.95 for all dyes, suggesting a competition between physisorption and chemisorption. The HOMOs are significantly delocalised on the nitrogen atom, while the LUMOs are delocalised around the aromatic nucleus, according to DFT and Monte Carlo simulation studies. The chemical reactivity of the dyes IC, RhB and O2 interacting at the adsorbent surface was demonstrated by calculating quantum parameters such as EHOMO, ELUMO and gap energy (Egap). The adsorption mechanism found was favorable, suggesting electrostatic attractions as well as pi–pi interactions between the benzene rings of the dye and the H2N-H2BDC linker. NH2-UiO-66 showed high stability after 5 adsorption cycles.

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揭示工业染料在zr基mof上的吸附机理:高效去除的计算和实验模型
考察了nh2 - uo2 -66对阳离子染料罗丹明B (RhB)和阴离子染料靛胭脂红(IC)、橙2 (O2)的脱除能力。采用XRD、SEM/EDX、FTIR、N2吸附和TG/DTG等分析技术对溶剂热法制备的nh2 - uo2 -66的理化性质进行了表征。NH2-UiO-66材料对IC和O2染料的吸附量分别为265.8 mg g−1和229.8 mg g−1,对RhB染料的吸附量为91.6 mg g−1。最精确的模型是Toth的等温模型,R2 >;0.90. Elovich动力学模型提供了最精确的拟合,具有R2 >;0.95,表明物理吸附和化学吸附之间存在竞争。根据DFT和蒙特卡罗模拟研究,homo在氮原子上明显离域,而lumo在芳香核周围离域。通过计算EHOMO、ELUMO和间隙能(Egap)等量子参数,证明了染料IC、RhB和O2在吸附剂表面相互作用的化学反应性。发现的吸附机制良好,表明染料苯环与H2N-H2BDC连接剂之间存在静电吸引和pi-pi相互作用。NH2-UiO-66在5次循环后表现出较高的稳定性。
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来源期刊
Materials Advances
Materials Advances MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.60
自引率
2.00%
发文量
665
审稿时长
5 weeks
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