School of Mechanical Engineering, Tianjin University, Tianjin 300350, China.
Key Laboratory of Mechanism Theory and Equipment Design of Ministry of Education, Tianjin University, Tianjin 300350, China.
Chem Soc Rev. 2022 Oct 17;51(20):8476-8583. doi: 10.1039/d0cs01033b.
Liquid-repellent surfaces, such as superhydrophobic surfaces, superoleophobic surfaces, and slippery liquid-infused surfaces, have drawn keen research interest from the communities engaged in chemical synthesis, interfacial chemistry, surface engineering, bionic manufacturing and micro-nano machining. This is due to their great potential applications in liquid-proofing, self-cleaning, chemical resistance, anti-icing, water/oil remediation, biomedicine, However, poor robustness and durability that notably hinders the real-world applications of such surfaces remains their Achilles heel. The past few years have witnessed rapidly increasing publications that address the robustness and durability of liquid-repellent surfaces, and many breakthroughs have been achieved. This review provides an overview of the recent progress made towards robust and durable liquid-repellent surfaces. First, we discuss the wetting of solid surface and its generally-adopted characterisation methods, and introduce typical liquid-repellent surfaces. Second, we focus on various evaluation methods of the robustness and durability of liquid-repellent surfaces. Third, the recent advances in design and fabrication of robust and durable liquid-repellent surfaces are reviewed in detail. Fourth, we present the applications where these surfaces have been employed in fields like chemistry, engineering, biology and in daily life. Finally, we discuss the possible research perspectives in robust and durable liquid-repellent surfaces. By presenting such state-of-the-art of this significant and fast-developing area, we believe that this review will inspire multidisciplinary scientific communities and industrial circles to develop novel liquid-repellent surfaces that can meet the requirements of various real-world applications.
疏液表面,如超疏水表面、超疏油表面和滑液注入表面,引起了从事化学合成、界面化学、表面工程、仿生制造和微纳加工的研究人员的浓厚兴趣。这是因为它们在防水、自清洁、耐化学性、抗结冰、油水修复、生物医学等方面有很大的应用潜力。然而,其显著阻碍这些表面实际应用的差稳健性和耐久性仍然是它们的阿喀琉斯之踵。在过去的几年中,越来越多的出版物关注疏液表面的稳健性和耐久性,并且已经取得了许多突破。本文综述了近年来在稳健和耐用的疏液表面方面的进展。首先,我们讨论了固体表面的润湿及其常用的表征方法,并介绍了典型的疏液表面。其次,我们重点介绍了疏液表面稳健性和耐久性的各种评估方法。第三,详细回顾了设计和制造稳健和耐用的疏液表面的最新进展。第四,介绍了这些表面在化学、工程、生物和日常生活等领域的应用。最后,我们讨论了稳健和耐用的疏液表面的可能研究前景。通过呈现这一重要且快速发展领域的最新进展,我们相信本文综述将激发多学科的科学界和工业界开发能够满足各种实际应用需求的新型疏液表面。