Hossain U H, Jantsen G, Muench F, Kunz U, Ensinger W
Technische Universität Darmstadt, Department of Materials Science, Materials Analysis, Alarich-Weiss-Str.2, D-64287 Darmstadt, Germany.
Nanotechnology. 2022 Mar 23;33(24). doi: 10.1088/1361-6528/ac59e5.
Ion-track etching represents a highly versatile way of introducing artificial pores with diameters down into the nm-regime into polymers, which offers considerable synthetic flexibility in template-assisted nanofabrication schemes. While the mechanistic foundations of ion-track technology are well understood, its potential for creating structurally and compositionally complex nano-architectures is far from being fully tapped. In this study, we showcase different strategies to expand the synthetic repertoire of ion-track membrane templating by creating several new 1D nanostructures, namely metal nanotubes of elliptical cross-section, funnel-shaped nanotubes optionally overcoated with titania or nickel nanospike layers, and concentrical as well as stacked metal nanotube-nanowire heterostructures. These nano-architectures are obtained solely by applying different wet-chemical deposition methods (electroless plating, electrodeposition, and chemical bath deposition) to ion-track etched polycarbonate templates, whose pore geometry is modified through plastic deformation, consecutive etching steps under differing conditions, and etching steps intermitted by spatially confined deposition, providing new motifs for nanoscale replication.
离子径迹蚀刻是一种将直径降至纳米级的人造孔引入聚合物的极为通用的方法,它在模板辅助纳米制造方案中提供了相当大的合成灵活性。虽然离子径迹技术的机理基础已得到充分理解,但其在创建结构和成分复杂的纳米结构方面的潜力远未得到充分挖掘。在本研究中,我们展示了不同的策略,通过创建几种新的一维纳米结构来扩展离子径迹膜模板的合成方法,即椭圆形横截面的金属纳米管、可选地涂覆有二氧化钛或镍纳米尖层的漏斗形纳米管,以及同心和堆叠的金属纳米管 - 纳米线异质结构。这些纳米结构完全通过将不同的湿化学沉积方法(化学镀、电沉积和化学浴沉积)应用于离子径迹蚀刻的聚碳酸酯模板而获得,其孔几何形状通过塑性变形、在不同条件下的连续蚀刻步骤以及由空间限制沉积中断的蚀刻步骤进行修改,为纳米级复制提供了新的图案。