Zhang Juan, Xie Zongli, Hoang Manh, Hill Anita J, Cong Weiwei, She Feng Hua, Gao Weimin, Kong Ling Xue
Institute for Frontier Materials, Deakin University, Waurn Ponds, VIC 3216, Australia.
Soft Matter. 2014 Jul 28;10(28):5192-200. doi: 10.1039/c4sm00589a.
Cross-linked poly(ethylene glycol) diacrylate (PEGDA) hydrogels with uniformly controlled nanoporous structures templated from hexagonal lyotropic liquid crystals (LLC) represent separation membrane materials with potentially high permeability and selectivity due to their high pore density and narrow pore size distribution. However, retaining LLC templated nanostructures is a challenge as the polymer gels are not strong enough to sustain the surface tension during the drying process. In the current study, cross-linked PEGDA gels were reinforced with a silica network synthesized via an in situ sol-gel method, which assists in the retention of the hexagonal LLC structure. The silica precursor does not obstruct the formation of hexagonal phases. After surfactant removal and drying, these hexagonal structures in samples with a certain amount of tetraethoxysilane (TEOS) loading are well retained while the nanostructures are collapsed in samples without silica reinforcement, leading to the hypothesis that the reinforcement provided by the silica network stabilizes the LLC structure. The study examines the conditions necessary for a sufficient and well dispersed silica network in PEGDA gels that contributes to the retention of original LLC structures, which potentially enables broad applications of these gels as biomedical and membrane materials.
以六方溶致液晶(LLC)为模板制备的具有均匀可控纳米多孔结构的交联聚乙二醇二丙烯酸酯(PEGDA)水凝胶,因其高孔隙密度和窄孔径分布,是具有潜在高渗透性和选择性的分离膜材料。然而,由于聚合物凝胶在干燥过程中强度不足以承受表面张力,保留LLC模板化的纳米结构是一项挑战。在当前研究中,通过原位溶胶 - 凝胶法合成的二氧化硅网络增强交联PEGDA凝胶,这有助于保留六方LLC结构。二氧化硅前驱体不会阻碍六方相的形成。去除表面活性剂并干燥后,含有一定量四乙氧基硅烷(TEOS)负载的样品中的这些六方结构得到很好的保留,而没有二氧化硅增强的样品中的纳米结构则会塌陷,这导致了二氧化硅网络提供的增强作用稳定了LLC结构的假设。该研究考察了在PEGDA凝胶中形成充分且分散良好的二氧化硅网络所需的条件,这有助于保留原始LLC结构,从而有可能使这些凝胶作为生物医学和膜材料得到广泛应用。