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Fabrication of nanoporous graphene/polymer composite membranes

机译:制备纳米多孔石墨烯/聚合物复合膜

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Graphene is currently investigated as a promising membrane material in which selective pores can be created depending on the requirements of the application. However, to handle large-area nanoporous graphene a stable support material is needed. Here, we report on composite membranes consisting of large-area single layer nanoporous graphene supported by a porous polymer. The fabrication is based on ion-track nanotechnology with swift heavy ions directly creating atomic pores in the graphene lattice and damaged tracks in the polymer support. Subsequent chemical etching converts the latent ion tracks in the supporting polymer foil, here polyethylene terephthalate (PET), into open microchannels while the perfectly aligned pores in the graphene top layer remain unaffected. To avoid unintentional damage creation and delamination of the graphene layer from the substrate, the graphene is encapsulated by a protecting poly(methyl methacrylate) (PMMA) layer. By this procedure a stable composite membrane is obtained consisting of nanoporous graphene (coverage close to 100%) suspended across selfaligned track-etched microchannels in a polymer support film. Our method presents a facile way to create high quality suspended graphene of tunable pore size supported on a flexible porous polymeric support, thus enabling the development of membranes for fast and selective ultrafiltration separation processes.
机译:石墨烯是目前调查作为一种很有前途的膜材料的选择性毛孔根据需求的创建应用程序。纳米多孔石墨烯材料是一个稳定的支持需要的。大面积单层纳米多孔组成石墨烯由多孔聚合物支持。制造是基于ion-track纳米技术创建原子直接与迅速重离子毛孔的石墨烯晶格和损坏的痕迹在聚合物的支持。蚀刻将潜在的离子跟踪的支持聚合物薄膜、聚乙烯对苯二甲酸乙二醇酯(PET),进入开放的巩膜而石墨烯中的完全一致的毛孔表层不受影响。意外伤害的创建和分层石墨烯层的衬底,石墨烯是由保护封装聚甲基丙烯酸甲酯(PMMA)层。过程稳定的复合膜组成的纳米多孔石墨烯(覆盖率接近在selfaligned 100%)暂停在聚合物支持track-etched式微通道电影。高质量的悬浮的石墨烯可调孔大小支持灵活的多孔聚合物支持,从而使开发为快速、选择性超滤膜分离过程。

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