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通过模块化组装制备的逐层可剥离银多层膜。

Layer-by-layer strippable Ag multilayer films fabricated by modular assembly.

作者信息

Li Yan, Chen Xiaoyan, Li Qianqian, Song Kai, Wang Shihui, Chen Xiaoyan, Zhang Kai, Fu Yu, Jiao Yong-Hua, Sun Ting, Liu Fu-Chun, Han En-Hou

机构信息

College of Sciences and ‡College of Life and Health Sciences, Northeastern University , Shenyang 110819, People's Republic of China.

出版信息

Langmuir. 2014 Jan 21;30(2):548-53. doi: 10.1021/la4045557. Epub 2014 Jan 6.

Abstract

We have developed a new method to fabricate multilayer films, which uses prepared thin films as modular blocks and transfer as operation mode to build up multilayer structures. In order to distinguish it from the in situ fabrication manner, this method is called modular assembly in this study. On the basis of such concept, we have fabricated a multilayer film using the silver mirror film as the modular block and poly(lactic acid) as the transfer tool. Due to the special double-layer structure of the silver mirror film, the resulting multilayer film had a well-defined stratified architecture with alternate porous/compact layers. As a consequence of the distinct structure, the interaction between the adjacent layers was so weak that the multilayer film could be layer-by-layer stripped. In addition, the top layer in the film could provide an effective protection on the morphology and surface property of the underlying layers. This suggests that if the surface of the film was deteriorated, the top layer could be peeled off and the freshly exposed surface would still maintain the original function. The successful preparation of the layer-by-layer strippable silver multilayer demonstrates that modular assembly is a feasible and effective method to build up multilayer films capable of creating novel and attractive micro/nanostructures, having great potential in the fabrication of nanodevices and coatings.

摘要

我们开发了一种制备多层膜的新方法,该方法使用制备好的薄膜作为模块单元,并以转移作为操作方式来构建多层结构。为了将其与原位制备方式区分开来,本研究中将这种方法称为模块化组装。基于这一概念,我们以银镜膜为模块单元、聚乳酸为转移工具制备了一种多层膜。由于银镜膜特殊的双层结构,所得多层膜具有明确的分层结构,由多孔层和致密层交替组成。由于结构独特,相邻层之间的相互作用非常弱,以至于多层膜可以逐层剥离。此外,膜中的顶层可以对下层的形态和表面性质提供有效的保护。这表明,如果膜的表面受损,顶层可以被剥离,新暴露的表面仍能保持原来的功能。逐层可剥离银多层膜的成功制备表明,模块化组装是一种可行且有效的方法,可用于构建能够创造新颖且有吸引力的微/纳米结构的多层膜,在纳米器件和涂层的制备方面具有巨大潜力。

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