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多功能结构化平台:从聚合物基薄膜的图案化到随后用各种纳米材料填充

Multifunctional Structured Platforms: From Patterning of Polymer-Based Films to Their Subsequent Filling with Various Nanomaterials.

作者信息

Handrea-Dragan Madalina, Botiz Ioan

机构信息

Interdisciplinary Research Institute in Bio-Nano-Sciences, Babes-Bolyai University, 42 Treboniu Laurian Str. 400271 Cluj-Napoca, Romania.

Faculty of Physics, Babes-Bolyai University, 1 M. Kogalniceanu Str. 400084 Cluj-Napoca, Romania.

出版信息

Polymers (Basel). 2021 Jan 30;13(3):445. doi: 10.3390/polym13030445.

Abstract

There is an astonishing number of optoelectronic, photonic, biological, sensing, or storage media devices, just to name a few, that rely on a variety of extraordinary periodic surface relief miniaturized patterns fabricated on polymer-covered rigid or flexible substrates. Even more extraordinary is that these surface relief patterns can be further filled, in a more or less ordered fashion, with various functional nanomaterials and thus can lead to the realization of more complex structured architectures. These architectures can serve as multifunctional platforms for the design and the development of a multitude of novel, better performing nanotechnological applications. In this work, we aim to provide an extensive overview on how multifunctional structured platforms can be fabricated by outlining not only the main polymer patterning methodologies but also by emphasizing various deposition methods that can guide different structures of functional nanomaterials into periodic surface relief patterns. Our aim is to provide the readers with a toolbox of the most suitable patterning and deposition methodologies that could be easily identified and further combined when the fabrication of novel structured platforms exhibiting interesting properties is targeted.

摘要

有数量惊人的光电子、光子、生物、传感或存储介质设备(仅举几例),它们依赖于在聚合物覆盖的刚性或柔性基板上制造的各种非凡的周期性表面起伏微纳图案。更非凡的是,这些表面起伏图案可以或多或少以有序的方式进一步填充各种功能纳米材料,从而实现更复杂的结构化架构。这些架构可以作为多功能平台,用于设计和开发众多新颖、性能更好的纳米技术应用。在这项工作中,我们旨在通过不仅概述主要的聚合物图案化方法,还强调各种沉积方法,来广泛概述如何制造多功能结构化平台,这些沉积方法可以将功能纳米材料的不同结构引导到周期性表面起伏图案中。我们的目标是为读者提供一个最合适的图案化和沉积方法的工具箱,当目标是制造具有有趣特性的新型结构化平台时,可以轻松识别并进一步组合这些方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f972/7866561/7b772980b5e5/polymers-13-00445-g003.jpg

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