Winkleman Adam, Bracher Paul J, Gitlin Irina, Whitesides George M
Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford St., Cambridge, MA 02138.
Chem Mater. 2007;19(6):1362-1368. doi: 10.1021/cm062626f.
This manuscript describes the fabrication and manipulation of millimeter-scale spheres fabricated from ionotropic hydrogels that are crosslinked with paramagnetic metal ions (e.g., Ho(3+)). These ionotropic hydrogels experience a force in a magnetic field gradient that correlates with the concentration of the paramagnetic cations crosslinking the polymer. In an externally applied magnetic field, the paramagnetic hydrogel spheres assemble into ordered arrays or confined geometrical structures in the regions of highest magnetic field. These spheres can be separated from heterogeneous mixtures of diamagnetic materials using a simple bar magnet. Two applications using these recoverable hydrogel spheres were demonstrated: i) When prepared with embedded indicator dyes bound to paper, the spheres were used as colorimetric sensors for pH. ii) When prepared with embedded activated carbon powder, they were used to remove organic materials from aqueous solutions.
本手稿描述了由与顺磁性金属离子(如Ho(3+))交联的离子型水凝胶制成的毫米级球体的制造和操控。这些离子型水凝胶在磁场梯度中会受到一种力,该力与交联聚合物的顺磁性阳离子浓度相关。在外部施加的磁场中,顺磁性水凝胶球体在磁场最强的区域组装成有序阵列或受限的几何结构。使用简单的条形磁铁就可以将这些球体与抗磁性材料的异质混合物分离。展示了使用这些可回收水凝胶球体的两种应用:i)当制备有与纸结合的嵌入式指示剂染料时,球体用作pH值的比色传感器。ii)当制备有嵌入式活性炭粉末时,它们用于从水溶液中去除有机材料。