4.8 Article

Magnetic Dendritic Materials for Highly Efficient Adsorption of Dyes and Drugs

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 2, Issue 5, Pages 1483-1491

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/am100114f

Keywords

adsorption; dye; iron oxide; magnetic adsorbent; hyperbranched polymer; Langmuir isotherm

Funding

  1. National Natural Science Foundation of China [50773038, 20974093]
  2. National Basic Research Program of China (973 Program) [2007CB936000]
  3. Science Foundation of Chinese University
  4. National Excellent Doctoral Dissertation of China [200527]

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A versatile and robust adsorbent with both magnetic property and very high adsorption capacity is presented on the basis of functionalization of iron oxide-silica magnetic particles with carboxylic hyperbranched polyglycerol (Fe3O4/SiO2/HPG-COOH). The structure of the resulting product was confirmed by Fourier transform infrared (FTIR) spectra, thermo gravimetric analysis (TGA), zeta-potential, and transmission electron microscopy (TEM). According to the TGA results, the density of the carboxylic groups on the surface of Fe3O4/SiO2/HPG-COOH is calculated to be as high as 3.0 mmol/g. posing a powerful base For adsorbing dyes and drugs. Five kinds of dyes and one representative anticancer drug were chosen to investigate the adsorption capacity of the as-prepared magnetic adsorbent. The adsorbent shows highly efficient adsorption performance for all of the adsorbates especially for the cationic dyes and drug. For example, the saturated adsorption capacity of the Fe3O4/SiO2/HPG-COOH for methyl violet (MV) can reach 0.60 mmol/g, which is much higher than the previous magnetic adsorbents (usually lower than 0.30 mmol/g). 95% of MV and 90% of R6G could be adsorbed within 5 min, and both of the adsorptions reached equilibrium in about 15 min. The adsorption kinetics and isotherm of the adsorbents were investigated in detail and found that the kinetic and equilibrium adsorptions are well-modeled using pseudo-second-order kinetics and Langmuir isotherm model, respectively. In addition, the influences of pH and ionic strength on the adsorption capacity were also examined and found that pH has much greater effect on the adsorption capacity compared with the ionic strength. Regeneration experiments showed that the Fe3O4/SiO2/HPG-COOH can be well-regenerated in ethanol and partially regenerated in 1 M HCI aqueous solution. After regeneration, the magnetic adsorbents can still show high adsorption capacity even for 10 cycles of desorption-adsorption. No obvious decreases of magnetic intensity and. aggregation of adsorbents can be observed even after 10 cycles of adsorption-desorption.

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