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具有高透明度和机械强度的珍珠层启发型水下超疏油薄膜。

Nacre-inspired underwater superoleophobic films with high transparency and mechanical robustness.

机构信息

CAS Key Laboratory of Bio-inspired Materials and Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, P. R. China.

School of Ophthalmology & Optometry, Eye Hospital, Wenzhou Medical University, Wenzhou, P. R. China.

出版信息

Nat Protoc. 2022 Nov;17(11):2647-2667. doi: 10.1038/s41596-022-00725-3. Epub 2022 Aug 15.

DOI:10.1038/s41596-022-00725-3
PMID:35970874
Abstract

Underwater superoleophobic materials have attracted increasing attention because of their remarkable potential applications, especially antifouling, self-cleaning and oil-water separation. A limitation of most superoleophobic materials is that they are non-transparent and have limited mechanical stability underwater. Here, we report a protocol for preparing a transparent and robust superoleophobic film that can be used underwater. It is formed by a hydrogel layer prepared by the superspreading of chitosan solution on a superhydrophilic substrate and biomimetic mineralization of this layer. In contrast to conventional hydrogel-based materials, this film exhibits significantly improved mechanical properties because of the combination of high-energy, ordered, inorganic aragonite (one crystalline polymorph of calcium carbonate) and homogeneous external hierarchical micro/nano structures, leading to robust underwater superoleophobicity and ultralow oil adhesion. Moreover, the mineralized film is suitable for neutral and alkaline environments and for containing organic solvent underwater and can be coated on different transparent materials, which has promising applications in underwater optics, miniature reactors and microfluidic devices. In this protocol, the time for the whole biomimetic mineralization process is only ~6 h, which is significantly shorter than that of traditional methods, such as gas diffusion and the Kitano method. The protocol can be completed in ~2 weeks and is suitable for researchers with intermediate expertise in organic chemistry and inorganic chemistry.

摘要

水下超疏油材料因其具有显著的潜在应用价值而受到越来越多的关注,特别是在防污、自清洁和油水分离方面。大多数超疏油材料的一个局限性是它们不透明,并且在水下的机械稳定性有限。在这里,我们报告了一种制备透明且坚固的水下超疏油膜的方案。该膜由水凝胶层组成,该水凝胶层是通过在超亲水基底上超伸展壳聚糖溶液并对该层进行仿生矿化而形成的。与传统的基于水凝胶的材料相比,由于高能、有序的无机方解石(碳酸钙的一种晶型)和均匀的外部分级微/纳米结构的结合,该膜表现出显著改善的机械性能,从而具有坚固的水下超疏油性和超低油附着性。此外,矿化膜适用于中性和碱性环境以及水下含有机溶剂的环境,并且可以涂覆在不同的透明材料上,在水下光学、微型反应器和微流控装置等领域具有广阔的应用前景。在本方案中,整个仿生矿化过程的时间仅约为 6 小时,明显短于传统方法(如气体扩散和北村法)。该方案可以在大约 2 周内完成,适合具有中级有机化学和无机化学专业知识的研究人员。

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Nat Protoc. 2022 Nov;17(11):2647-2667. doi: 10.1038/s41596-022-00725-3. Epub 2022 Aug 15.
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本文引用的文献

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Durable Underwater Superoleophobic Coatings via Dispersed Micro Particle-Induced Hierarchical Structures Inspired by Pomfret Skin.受银鲳鱼皮启发,通过分散微粒诱导的分级结构制备的耐用水下超疏油涂层
ACS Appl Mater Interfaces. 2020 Sep 16;12(37):42430-42436. doi: 10.1021/acsami.0c12573. Epub 2020 Sep 3.
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