A Robust Co(II)-Based MOF for Highly Selective and Efficient Adsorption of Congo Red Dye

Abstract A new heteroleptic Co(II)-based metal−organic framework (MOF), {[Co2(L)(bib)1.5(H2O)]·2H2O}n (1), is synthesized using 5,5′-(1,3-phenylenebis(methyleneoxy)diisophthalate) (H4L) and 4,4′-bis(imidazolyl)biphenyl (bib) as structurally complementary linkers and characterized. The structural analysis reveals that 1 adopts a robust 2-fold interpenetrated 3D framework with a (4,6)-connected fsc topology, whose highly interlocked architecture contributes to structural stability in aqueous media. The flexible V-shaped polycarboxylate ligand promotes extended connectivity, while the rigid nitrogen-rich biphenyl-imidazole linker enhances framework stability via strong coordination and π···π stacking interactions. Adsorption studies demonstrate that MOF 1 exhibits remarkable selectivity and efficiency toward the anionic dye Congo Red (CR), achieving 99.55% removal and a maximum adsorption capacity (qmax) of 5529 mg·g−1 at 20 °C under mild conditions. Dosage optimization identifies 9 mg of MOF 1 as optimal, providing 98.94% removal and 5496 mg·g−1 capacity under near-ambient conditions. pH-dependent studies show maximum uptake at pH 6, where electrostatic attraction, hydrogen bonding, and framework integrity act synergistically. Furthermore, MOF 1 maintains a high recovery efficiency of 87.50% over multiple cycles. The material retains an appreciable adsorption performance over repeated cycles, although some loss in capacity occurs during successive adsorption−desorption treatments. The combination of high adsorption capacity, rapid dye removal, and structural stability positions MOF 1 as a promising candidate for sustainable wastewater dye remediation.

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Publication Details

Journal
Crystal Growth & Design
Published
2026-10-05
DOI
https://doi.org/10.1021/acs.cgd.6c00282
Primary Topic
Metal-Organic Frameworks: Synthesis and Applications
Type
article
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article

A Robust Co(II)-Based MOF for Highly Selective and Efficient Adsorption of Congo Red Dye

Yinna Xu, Aparna Kushwaha, Jun Wang, Abhinav Kumar et al.
Crystal Growth & Design
Metal-Organic Frameworks: Synthesis and Applications
article

A Robust Co(II)-Based MOF for Highly Selective and Efficient Adsorption of Congo Red Dye

Yinna Xu, Aparna Kushwaha, Jun Wang, Abhinav Kumar, Shreya Srivastava, Mohd. Muddassir, Jiefeng Huang, Huan Wu, Ying Pan, Jinmei Wang
article en

Abstract

Abstract A new heteroleptic Co(II)-based metal−organic framework (MOF), {[Co2(L)(bib)1.5(H2O)]·2H2O}n (1), is synthesized using 5,5′-(1,3-phenylenebis(methyleneoxy)diisophthalate) (H4L) and 4,4′-bis(imidazolyl)biphenyl (bib) as structurally complementary linkers and characterized. The structural analysis reveals that 1 adopts a robust 2-fold interpenetrated 3D framework with a (4,6)-connected fsc topology, whose highly interlocked architecture contributes to structural stability in aqueous media. The flexible V-shaped polycarboxylate ligand promotes extended connectivity, while the rigid nitrogen-rich biphenyl-imidazole linker enhances framework stability via strong coordination and π···π stacking interactions. Adsorption studies demonstrate that MOF 1 exhibits remarkable selectivity and efficiency toward the anionic dye Congo Red (CR), achieving 99.55% removal and a maximum adsorption capacity (qmax) of 5529 mg·g−1 at 20 °C under mild conditions. Dosage optimization identifies 9 mg of MOF 1 as optimal, providing 98.94% removal and 5496 mg·g−1 capacity under near-ambient conditions. pH-dependent studies show maximum uptake at pH 6, where electrostatic attraction, hydrogen bonding, and framework integrity act synergistically. Furthermore, MOF 1 maintains a high recovery efficiency of 87.50% over multiple cycles. The material retains an appreciable adsorption performance over repeated cycles, although some loss in capacity occurs during successive adsorption−desorption treatments. The combination of high adsorption capacity, rapid dye removal, and structural stability positions MOF 1 as a promising candidate for sustainable wastewater dye remediation.

Crystal Growth & Design
Guangdong Medical College (CN), Shenzhen University (CN), University of Lucknow (IN), King Saud University (SA), Sichuan University of Science and Engineering (CN)
Openalex Percentile: Top 27%
Metal-Organic Frameworks: Synthesis and Applications
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