...
首页> 外文期刊>Nanoscale >Nanobubble and nanodroplet template growth of particle nanorings versus nanoholes in drying nanofluids and polymer films
【24h】

Nanobubble and nanodroplet template growth of particle nanorings versus nanoholes in drying nanofluids and polymer films

机译:Nanobubble nanodroplet模板发展粒子nanorings与nanoholes干燥纳米流体和聚合物电影

获取原文
获取原文并翻译 | 示例

摘要

Here we demonstrate how confined nanobubbles and nanodroplets, which can either form spontaneously at the suspension/substrate interface, or can more interestingly be purposely introduced in the system, allow assembly of nanoparticles (NPs) into nanoring-like structures with a flexible control of both the size and distribution. As with most wetting-mediated nanopatterning methods, this approach provides an alternative to direct replication from templates. The formation of two-dimensional ring-shaped nanostructures was obtained by drying a nanocolloidal gold (Au) suspension drop confining nanobubbles (or nanodroplets) that are settled at a solid substrate. AFM investigation of the dry nanostructures showed the formation of isolated Au NPs rings having diameters ranging from 200 nm to 500 nm along the dewetting-drying path of the suspension drop. The flexibility of these wetting processes for the variation of the spatial features of the nanoring (size and shape resolution) essentially depends on physical parameters such as the nanobubble/nanodroplet size and concentration, the wettability, and the evaporation rate of the nanofluid drop on the substrate. Furthermore, we show that the underpinning mechanism of this evaporation-assisted assembly of Au NPs into supported functional nanoring patterns is fairly similar to that at work in the spontaneous formation of nanoholes in drying polymer thin films. Finally, the method proves to be a simple and flexible nanofabrication tool to be extended to various nanosize objects, towards specific optical and sensing applications.'
机译:这里我们展示如何在nanobubbles和可以自发形成的液滴在悬架/衬底界面,也可以更有趣的是被故意引入的系统,允许组装纳米粒子(NPs)成nanoring-like结构灵活控制的大小和分布。与大多数wetting-mediated nanopatterning方法,这种方法提供了一种替代方法直接复制模板。二维环形纳米结构通过干燥nanocolloidal黄金(Au)悬架围nanobubbles下降(或液滴)在一个坚实的解决衬底。纳米结构表现出孤立的形成非盟NPs环直径从200海里沿着dewetting-drying 500海里的路径悬架下降。变化的空间过程nanoring(大小和形状特性分辨率)本质上取决于物理nanobubble / nanodroplet等参数大小和浓度,润湿性,蒸发率nanofluid下降的衬底。基础的机制evaporation-assisted大会盟NPs进入支持功能nanoring模式相当类似于在工作中自发的nanoholes干燥聚合物层的形成电影。奈米制造和灵活的工具来进行扩展各种计算对象,对具体光学和传感应用。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号