Department of Civil and Environmental Engineering, 3564 Engineering Building 428 S. Shaw Lane, Michigan State University, East Lansing, MI 48824, USA.
Water Res. 2013 Aug 1;47(12):3984-96. doi: 10.1016/j.watres.2012.10.057. Epub 2013 Mar 29.
Phase inversion of polymer casting mixtures filled with hierarchical functional nanostructures is proposed as a synthetic route for the design of multifunctional membranes. The study tested the hypothesis that by regulating the relative content of components representing different levels in the nanofiller hierarchy, the structure and additional functions of such membranes could be controlled separately. Exfoliated graphite nanoplatelets (xGnPs) decorated by Au nanoparticles (Au NPs), used as a model hierarchical nanofiller, were added to the casting mixture of polysulfone, N-Methyl-2-pyrrolidone and polyethylene glycol prior to forming the membrane by phase inversion. The resulting porous asymmetric nanocomposites were shown to be permselective and catalytically active ultrafiltration membranes that were more resistant to compaction, more permeable than xGnP-free membranes and at least as selective. By designing membrane compositions with different relative amounts of Au-decorated xGnPs and Au-free xGnPs, the structure (controlled by the loading of xGnPs) and catalytic activity (controlled by the loading of Au NPs) could be controlled largely independently.
提出了一种聚合物铸膜混合物的相反转方法,该方法填充有分级功能纳米结构,作为设计多功能膜的合成途径。该研究检验了以下假设:通过调节在纳米填料分级结构中代表不同层次的组分的相对含量,可以分别控制此类膜的结构和附加功能。作为模型分级纳米填料的经金纳米颗粒(Au NPs)修饰的石墨纳米片(xGnPs),在通过相转化形成膜之前被添加到聚砜、N-甲基-2-吡咯烷酮和聚乙二醇的铸膜混合物中。结果表明,所得的多孔非对称纳米复合材料是具有选择透过性和催化活性的超滤膜,其抗压实性更强、渗透性比无 xGnP 的膜更高、选择性至少相同。通过设计具有不同相对量的经 Au 修饰的 xGnPs 和无 Au 的 xGnPs 的膜组成,可以在很大程度上独立控制结构(由 xGnPs 的负载控制)和催化活性(由 Au NPs 的负载控制)。