ARC Centre of Excellence for Functional Nanomaterials, School of Chemical Engineering, The University of Queensland, Queensland, Australia.
J Colloid Interface Sci. 2011 Nov 15;363(2):431-9. doi: 10.1016/j.jcis.2011.07.071. Epub 2011 Jul 28.
A new type of nanocomposite ion-exchange membranes containing sulfonated polyethersulfone (sPES) polymer matrix and sulfonated surface-functionalized mesoporous silica (SS) inorganic fillers was prepared. Various characterizations revealed that the addition of inorganic fillers with different shapes had a significant influence on the membrane structure. The mesoporous inorganic fillers not only created extra pore and water channels, assisting the ionic migration and improving conductivity of the composites, but also provided additional fixed charge groups upon surface modification. This allows the Donnan exclusion to work effectively and thus improve the selectivity of membranes. It was proved that the incorporation of appropriate amount of SS additive could significantly improve the conductivity (up to 20 folds) and permselectivity (about 14%) of the sPES membranes. The performance of these newly developed membranes in desalination by electrodialysis was comparable with that of a commercial membrane (FKE).
一种新型的纳米复合离子交换膜,含有磺化聚醚砜(sPES)聚合物基质和磺化表面功能化的介孔硅(SS)无机填料。各种特性表明,添加具有不同形状的无机填料对膜结构有显著影响。介孔无机填料不仅创造了额外的孔和水通道,有助于离子迁移并提高复合材料的导电性,而且在表面改性时提供了额外的固定电荷基团。这使得道南排斥作用能够有效地发挥作用,从而提高膜的选择性。事实证明,适量添加 SS 添加剂可以显著提高 sPES 膜的电导率(高达 20 倍)和选择透过性(约 14%)。这些新开发的膜在电渗析脱盐中的性能可与商业膜(FKE)相媲美。