Related Experiment Video
Updated: Sep 11, 2025

Compact Quantum Dots for Single-molecule Imaging
Published on: October 9, 2012
Nano-size core-shell magnetic SO₃H-functionalized covalent organic frameworks via a functional defect strategy for
Chuqiang Que1, Hongwei Zhu1, Chang Liu1
1School of Chemistry and Chemical Engineering, Harbin institute of technology, Harbin 150001, China.
Abstract:
With the rapid expansion of textile printing and aquaculture industries, efficient dye wastewater treatment is urgently needed. Here, magnetic sulfonic acid-functionalized covalent organic frameworks (Fe3O4@TpBD-SO3H COFs) were synthesized via a functional defect strategy using 4-aminobenzene-1,3-disulfonic acid (ADSA) as a competing monomer, generating periodic and sulfonate-rich nano adsorbent. Adsorption experiments involving malachite green (MG) and crystal violet (CV) in single and binary systems, supported by adsorption model fitting, indicated multimolecular adsorption through non-parallel molecular orientations. In binary adsorption system, MG enhanced CV adsorption (synergistic effect), whereas CV suppressed MG adsorption (antagonistic effect). Dynamic competitive adsorption tests suggested that adsorption configuration transitions between single and binary systems influenced this co-adsorption phenomenon. Incorporating Fe3O4 magnetic cores rendered Fe3O4@TpBD-SO3H COFs highly hydrophilic, achieving excellent adsorption capacities for MG (1010.6 mg/g) and other cationic dyes, while minimally adsorbing anionic dyes. Moreover, the material exhibited strong resistance to interference from metal salts and maintained stable adsorption performance after ten regeneration cycles. Successful purification of real wastewater samples further demonstrates its practical potential for selective cationic dye removal from complex aqueous systems.
Related Concept Videos
Detergent Purification of Membrane Proteins
Ion Exchange
Colloidal precipitates

