Design of Polymer-Brush-Grafted Magnetic Nanoparticles for Highly Efficient Water Remediation

被引:108
作者
Farrukh, Aleeza [1 ]
Akram, Attia [3 ]
Ghaffar, Abdul [3 ]
Hanif, Sara [4 ]
Hamid, Almas [4 ]
Duran, Hatice [2 ]
Yameen, Basit [1 ]
机构
[1] Lahore Univ Management Sci, Sch Sci & Engn, Dept Chem, Lahore 54792, Pakistan
[2] TOBB Univ Econ & Technol, Dept Mat Sci & Nanotechnol Engn, TR-06560 Ankara, Turkey
[3] Univ Engn & Technol, Dept Chem, Lahore, Pakistan
[4] Kinnaird Coll Women, Dept Environm Sci, Lahore, Pakistan
关键词
magnetic nanoparticles; polymer brushes; dithiocarbamate; mercury; adsorbent; IRON-OXIDE NANOPARTICLES; HEAVY-METALS; ACTIVATED CARBON; REMOVAL; ADSORPTION; MERCURY; EQUILIBRIUM; SILICA; PARTICLES; ADSORBENT;
D O I
10.1021/am400427n
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Highly efficient removal of mercury(II) ions (Hg-II) from water has been reported by employing polymer-brush-functionalized magnetic nanoparticles (MNPs). Surface-initiated conventional radical polymerization (SI-cRP) was used to grow poly(2-aminoethyl methacrylate hydrochloride) (poly-AEMA center dot HCl) polymer chains on magnetite nanoparticles (Fe3O4), followed by the transformation of pendant amino groups into dithiocarbamate (DTC) groups, which showed high chelating affinity toward Hg-II ions. This polymer-brush-based DTC-functionalized MNP (MNPs-polyAEMA center dot DTC) platform showed the complete removal of Hg-II from aqueous solutions. The Hg-II ion removal capacity and efficiency of MNPs-polyAEMA center dot DTC were compared with its monolayer analogue, which was derived from the direct transformation of amino groups of (3-aminopropyl) triethoxysilane (APTES)-functionalized MNPs (MNPs-APTES) to DTC functional groups (MNPs-DTC). The surface chemical modifications and higher chelating functional group density, in the case of MNPs-polyAEMA center dot DTC, were ascertained by transmission electron microscopy (TEM), thermogravimetric analysis (TGA), physical property measurement system (PPMS), attenuated total reflectance infrared (ATR-IR) spectroscopy, and X-ray photoelectron spectroscopy (XPS). The Hg-II ion removal capacity and efficiency of monolayer and polymer-brush-based DTC-functionalized MNPs (MNPs-DTC and MNPs-polyAEMA center dot DTC, respectively) were evaluated and compared by studying the effect of various factors on the percentage removal of Hg-II such as adsorbent amount, temperature, and contact time. Furthermore, the adsorption behavior of MNPs-DTC and MNPs-polyAEMA center dot DTC was analyzed by applying Langmuir and Freundlich adsorption isotherm models. In addition, the adsorption thermodynamics, as well as the adsorption kinetics, were also evaluated in detail. The higher surface functional group density of MNPs-polyAEMA center dot DTC led to superior remediation characteristics toward Hg-II ions than its monolayer analogue.
引用
收藏
页码:3784 / 3793
页数:10
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