Suppr超能文献

用于大规模生产超疏水聚合物薄膜的分级结构阳极氧化铝模具的简易制备

Facile Fabrication of Hierarchical Structured Anodic Aluminum Oxide Molds for Large-Scale Production of Superhydrophobic Polymer Films.

作者信息

Balasankar Athinarayanan, Venkatesan Raja, Jeong Dae-Yeong, Oh Tae Hwan, Kim Seong-Cheol, Vetcher Alexandre A, Ramasundaram Subramaniyan

机构信息

Department of Physics, Gobi Arts and Science College, Gobichettipalayam 638453, India.

Nano-Hybrid Technology Research Center, Korea Electrotechnology Research Institute, 9 Beon-gil, 12 Bulmosan-gil, Seongsan-gu, Changwon 51543, Republic of Korea.

出版信息

Polymers (Basel). 2024 Aug 19;16(16):2344. doi: 10.3390/polym16162344.

Abstract

Anodized aluminum oxide (AAO) molds were used for the production of large-area and inexpensive superhydrophobic polymer films. A controlled anodization methodology was developed for the fabrication of hierarchical micro-nanoporous (HMN) AAO imprint molds (HMN-AAO), where phosphoric acid was used as both an electrolyte and a widening agent. Heat generated upon repetitive high-voltage (195 V) anodization steps is effectively dissipated by establishing a cooling channel. On the HMN-AAO, within the hemispherical micropores, arrays of hexagonal nanopores are formed. The diameter and depth of the micro- and nanopores are 18/8 and 0.3/1.25 µm, respectively. The gradual removal of micropatterns during etching in both the vertical and horizontal directions is crucial for fabricating HMN-AAO with a high aspect ratio. HMN-AAO rendered polycarbonate (PC) and polymethyl methacrylate (PMMA) films with respective water contact angles (WCAs) of 153° and 151°, respectively. The increase in the WCA is 80% for PC (85°) and 89% for PMMA (80°). On the PC and PMMA films, mechanically robust arrays of nanopillars are observed within the hemispherical micropillars. The micro-nanopillars on these polymer films are mechanically robust and durable. Regular nanoporous AAO molds resulted in only a hydrophobic polymer film (WCA = 113-118°). Collectively, the phosphoric acid-based controlled anodization strategy can be effectively utilized for the manufacturing of HMN-AAO molds and roll-to-roll production of durable superhydrophobic surfaces.

摘要

阳极氧化铝(AAO)模具被用于制备大面积且价格低廉的超疏水聚合物薄膜。开发了一种可控阳极氧化方法来制造分级微纳多孔(HMN)AAO压印模具(HMN-AAO),其中磷酸既用作电解质又用作扩孔剂。通过建立冷却通道有效地消散了重复高压(195 V)阳极氧化步骤时产生的热量。在HMN-AAO上,在半球形微孔内形成了六边形纳米孔阵列。微孔和纳米孔的直径和深度分别为18/8和0.3/1.25 µm。在垂直和水平方向蚀刻过程中微图案的逐渐去除对于制造具有高纵横比的HMN-AAO至关重要。HMN-AAO使聚碳酸酯(PC)和聚甲基丙烯酸甲酯(PMMA)薄膜的水接触角(WCA)分别为153°和151°。PC(85°)的WCA增加了80%,PMMA(80°)的WCA增加了89%。在PC和PMMA薄膜上,在半球形微柱内观察到机械坚固的纳米柱阵列。这些聚合物薄膜上的微纳柱机械坚固且耐用。规则的纳米多孔AAO模具仅产生疏水聚合物薄膜(WCA = 113-118°)。总体而言,基于磷酸的可控阳极氧化策略可有效地用于制造HMN-AAO模具以及卷对卷生产耐用的超疏水表面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4423/11359746/add3731555a1/polymers-16-02344-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验