MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, P. R. China.
ACS Appl Mater Interfaces. 2010 May;2(5):1483-91. doi: 10.1021/am100114f.
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 (Fe(3)O(4)/SiO(2)/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 Fe(3)O(4)/SiO(2)/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 Fe(3)O(4)/SiO(2)/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 Fe(3)O(4)/SiO(2)/HPG-COOH can be well-regenerated in ethanol and partially regenerated in 1 M HCl 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.
一种多功能且稳定的吸附剂,同时具有磁性和极高的吸附能力,是基于氧化铁-硅磁性粒子的羧基超支化聚甘油(Fe(3)O(4)/SiO(2)/HPG-COOH)功能化而制备的。通过傅里叶变换红外(FTIR)光谱、热重分析(TGA)、动电位和透射电子显微镜(TEM)对产物的结构进行了确认。根据 TGA 结果,计算出 Fe(3)O(4)/SiO(2)/HPG-COOH 表面羧酸基团的密度高达 3.0mmol/g,为吸附染料和药物提供了强大的基础。选择了 5 种染料和一种代表性的抗癌药物来研究所制备的磁性吸附剂的吸附能力。吸附剂对所有吸附物表现出高效的吸附性能,特别是对阳离子染料和药物。例如,Fe(3)O(4)/SiO(2)/HPG-COOH 对甲基紫(MV)的饱和吸附容量可达 0.60mmol/g,远高于以前的磁性吸附剂(通常低于 0.30mmol/g)。95%的 MV 和 90%的 R6G 可以在 5 分钟内被吸附,并且两种吸附物都在大约 15 分钟内达到平衡。详细研究了吸附剂的吸附动力学和吸附等温线,发现吸附动力学和平衡吸附均很好地符合准二级动力学和朗缪尔等温线模型。此外,还考察了 pH 和离子强度对吸附容量的影响,发现 pH 对吸附容量的影响比离子强度大得多。再生实验表明,Fe(3)O(4)/SiO(2)/HPG-COOH 可以在乙醇中很好地再生,并且在 1M HCl 水溶液中部分再生。再生后,即使经过 10 次解吸-吸附循环,磁性吸附剂仍能表现出较高的吸附能力。即使经过 10 次吸附-解吸循环,也观察不到磁性强度和吸附剂聚集的明显下降。