多组分液体注入系统:功能涂料的新方法

Zachary Applebee and Caitlin Howell
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引用次数: 0

摘要

注入液体的防污表面因其在工业和医学领域的多种应用而在多个领域引起了人们的兴趣。在迄今为止的几乎所有报告中,液体成分都只包含一种化学物质。然而,与传统的固体表面不同,液体表面的独特性质蕴含着协同甚至自适应功能的潜力,只需在液体涂层中加入额外的元素即可。在这项工作中,我们探索了多组分液体注入系统的概念,其中涂层液体由一种主要液体和一种或多种提供附加功能的次要成分组成。为了便于理解,我们根据次要成分的大小对最近报道的多组分液体注入表面进行了分类:分子级,其中次要成分为分子;纳米级,其中次要成分为纳米颗粒或等效物;微米级,其中附加成分为微米或以上大小。我们介绍了每种尺度的实例,展示了在液体中引入辅助元素如何产生协同效应,例如在保持原始表面的同时积极改变周围环境,而这是其他表面处理方法难以实现的。综述强调了制造方法的多样性,并对未来的研究方向提出了展望。在液体注入表面的液体基质中引入辅助成分是一种前景广阔的策略,具有创造新型多功能材料的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Multi-component liquid-infused systems: a new approach to functional coatings

Antifouling liquid-infused surfaces have generated interest in multiple fields due to their diverse applications in industry and medicine. In nearly all reports to date, the liquid component consists of only one chemical species. However, unlike traditional solid surfaces, the unique nature of liquid surfaces holds the potential for synergistic and even adaptive functionality simply by including additional elements in the liquid coating. In this work, we explore the concept of multi-component liquid-infused systems, in which the coating liquid consists of a primary liquid and a secondary component or components that provide additional functionality. For ease of understanding, we categorize recently reported multi-component liquid-infused surfaces according to the size of the secondary components: molecular scale, in which the secondary components are molecules; nanoscale, in which they are nanoparticles or their equivalent; and microscale, in which the additional components are micrometer size or above. We present examples at each scale, showing how introducing a secondary element into the liquid can result in synergistic effects, such as maintaining a pristine surface while actively modifying the surrounding environment, which are difficult to achieve in other surface treatments. The review highlights the diversity of fabrication methods and provides perspectives on future research directions. Introducing secondary components into the liquid matrix of liquid-infused surfaces is a promising strategy with significant potential to create a new class of multifunctional materials.

Keywords: Active surfaces; Antimicrobial; Antifouling; Interfaces; Sensing surfaces.

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Industrial Chemistry & Materials
Industrial Chemistry & Materials chemistry, chemical engineering, functional materials, energy, etc.-
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期刊介绍: Industrial Chemistry & Materials (ICM) publishes significant innovative research and major technological breakthroughs in all aspects of industrial chemistry and materials, with a particular focus on the important innovation of low-carbon chemical industry, energy and functional materials. By bringing researchers, engineers, and policymakers into one place, research is inspired, challenges are solved and the applications of science and technology are accelerated. The global editorial and advisory board members are valued experts in the community. With their support, the rigorous editorial practices and dissemination ensures your research is accessible and discoverable on a global scale. Industrial Chemistry & Materials publishes: ● Communications ● Full papers ● Minireviews ● Reviews ● Perspectives ● Comments
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