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The Nanoporous Metallisation of Polymer Membranes through Photocatalytically Initiated Electroless Deposition

机译:通过光催化引发的无电沉积聚合物膜的纳米多孔金属化

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We present the novel use of Photocatalytically Initiated Electroless Deposition (PIED) for the deposition of metal films with highly ordered arrays of sub-μm (hemi)spherical pores directly onto the surface of insulating organic membrane-based substrates. This is achieved by sensitisation of the target substrate with a TiO_2 photocatalyst followed by the self-assembly of a hexagonally close packed polystyrene microsphere template at the substrate surface. Metallisation then occurs through PIED into the template interstices and directly onto the TiO_2 sensitised membrane surface. The dimensions of the resultant pores in the deposited metal are determined by the size of the template microspheres while metal film thickness may be controlled by the deposition period. The fabrication of nanoporous metal by this novel method adds a conductive and permeable metallic structure of high surface area to an otherwise electrically insulating polymer membrane surface. Such metallised insulating membranes have potentially wide applications in membrane and separation technology, desalination and electrode / solid electrolyte composites for fuel cells.
机译:我们介绍了光催化引发的无电沉积(染色)的新颖使用,用于将金属膜沉积,具有高度有序的亚微米(Hemi)球形孔阵列直接放在基于绝缘有机膜的基材的表面上。这是通过用TiO_2光催化剂敏化靶衬底来实现的,然后在基板表面处的六角形填充聚苯乙烯微球模板的自组装。然后通过将金属化染色到模板间隙中,并直接进入TiO_2敏化膜表面。沉积金属中的所得孔的尺寸由模板微球的尺寸确定,而金属膜厚度可以通过沉积时段控制。通过这种新方法制造纳米孔金属的制造将高表面积的导电和可渗透的金属结构增加到另外的电绝缘的聚合物膜表面。这种金属化的绝缘膜在膜和分离技术,脱盐和电极/固体电解质复合材料中具有潜在的潜在宽的应用。

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