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Tunable Ultrathin Membranes with Nonvolatile Pore Shape Memory

机译:具有非易失性孔形状记忆的可调超薄膜

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The concept of a responsive nanoporous thin-film gel membranes whose pores could be tuned to a desired size by a specific "molecular signal" and whose pore geometry becomes "memorized" by the gel is reported. The similar to 100 rim thick membranes were prepared by dip-coating from a solution mixture of a random copolymer comprising responsive and photo-cross-linkable units and monodisperse latex nanopartides used as a sacrificial colloidal template. After stabilization of the films by photo-cross-linking the latex template was removed, yielding nanoporous structures with a narrow pore size distribution and a high porosity. The thin-film membranes could be transferred onto porous supports to serve as tunable size-selective barriers in various colloids separation applications. The pore dimensions and hence the membrane's colloidal-particle-size cutoff were reversibly regulated by swelling shrinking of the polymer network with a specially selected low-molar-mass compound. The attained pore shape was "memorized" in aqueous media and "erased" by treatment in special solvents reverting the membrane to the original state.
机译:报道了响应性的纳米多孔薄膜凝胶膜的概念,该膜的孔可以通过特定的“分子信号”调节至所需的大小,并且其孔的几何形状被凝胶“记忆”。通过浸涂由包含响应性和光可交联单元的无规共聚物和用作牺牲胶体模板的单分散胶乳纳米颗粒的溶液混合物,来制备类似于100个边缘厚的膜。在通过光交联使膜稳定之后,除去胶乳模板,得到具有窄孔径分布和高孔隙率的纳米多孔结构。薄膜可以转移到多孔载体上,在各种胶体分离应用中用作可调的尺寸选择屏障。孔尺寸以及因此膜的胶体粒径截断可通过使用特殊选择的低摩尔质量化合物使聚合物网络膨胀收缩来可逆地调节。将获得的孔形状“记忆”在水性介质中,并通过在特殊溶剂中处理“擦除”,将膜恢复至原始状态。

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