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1.
薛众鑫  江雷 《高分子学报》2012,(10):1091-1101
水下超疏油表面是指在油/水/固三相体系中,对油的接触角大于150°的固体表面.从鱼体表面和荷叶下表面2种具有水下超疏油性质的生物体系出发,讨论了影响水下超疏油性质的因素,并据此提出了仿生水下超疏油表面的设计方法.通过介绍目前典型的人造水下超疏油表面的制备手段和研究进展,概括了水下超疏油体系的发展现状.对浸润性和黏附性响应性可控的智能水下超疏油体系以及水下超疏油体系在液滴操控、抗生物黏附和油水分离等领域的应用进行了简要介绍.最后对仿生水下超疏油体系目前研究存在的问题及挑战进行了总结,在此基础上展望了该领域未来的发展方向.  相似文献   

2.
花生叶表面的高黏附超疏水特性研究及其仿生制备   总被引:2,自引:0,他引:2  
花生是一种常见的豆科作物.与低黏附超疏水的荷叶不同,花生叶表面同时具有超疏水和高黏附特性.水滴在花生叶表面的接触角为151±2°,显示出超疏水特性.此外,水滴可以牢固地附着在花生叶表面,将花生叶翻转90°甚至180°,水滴均不会从表面滚落,显示了良好的黏附性(黏附力超过80μN).研究发现,花生叶表面呈现微纳米多级结构,丘陵状微米结构表面具有无规则排列的纳米结构.花生叶表面特殊的微纳米多尺度结构是其表面呈现高黏附超疏水特性的关键因素.结合实验数据,对花生叶表面特殊浸润性机理进行了简要阐述.受此启发,利用聚二甲基硅氧烷复形得到了与花生叶表面微结构类似的高黏附疏水表面.本文以期为仿生制备高黏附超疏水表面提供新思路.  相似文献   

3.
陈钰  徐建生  郭志光 《化学进展》2012,24(5):696-708
近年来,除了荷叶表面,更多具有特殊润湿性的动植物表面同样受到关注。通过研究这些表面微观结构,人们成功地仿生制备出各种功能化超疏水表面,从而更好地满足工业中实际应用的需要。该综述简单地介绍了表面润湿的基本模型和最新的几种特殊表面结构,重点介绍近几年仿生超疏水表面应用的最新研究进展,主要包括超疏水表面在超疏油、表面润湿转换、外界刺激下的润湿行为调控、微流体、抗结冰等方面的应用。最后,对超疏水表面研究的未来发展进行了展望。  相似文献   

4.
介绍了仿生超疏表面的工作机制以及疏水整理液的发展, 系统综述了近10年来特殊浸润性在开拓多功能绿色纺织领域的研究进展, 讨论了双面超疏、 超疏/超亲、 图案化及可响应浸润性纺织品的制备技术及应用, 介绍近几年在纺织品疏水化功能改性方面取得的前瞻性工作, 包括自清洁防污、 油水分离、 机械耐久、 图案化、 自修复、 单向运输等, 特别是在智能响应、 电子可穿戴、 能源等新兴领域方面的应用. 最后, 对超疏水纺织功能材料目前所面临的挑战及未来发展的方向进行了展望.  相似文献   

5.
近年来,由于具有特殊浸润性的胶体光子晶体膜在传感、检测、催化等方面的重要应用,胶体光子晶体膜的超浸润研究受到科研工作者的广泛关注.本文阐述了包括超亲液、超疏液、两亲性、梯度浸润性、可调控浸润性、图案浸润性等具有特殊浸润性光子晶体膜的制备及其相关应用,并讨论疏水、超疏水和亲-疏图案不同浸润性基底对所制备胶体光子晶体膜的功能性及其相关应用的影响.该工作对于发展新型功能型材料器件的制备具有重要的借鉴及指导意义.  相似文献   

6.
黏附性是超疏水表面的一个重要特性,随着对超疏水表面研究的深入,具有响应特性的智能超疏水表面引起了人们的极大兴趣,而能够作为“机械手”抓取液滴的具有高黏附性的超疏水表面自然成为关注对象。 本文讨论了表面形貌和表面化学组成对超疏水表面黏附性的影响,综述了近年来高黏附性超疏水表面制备方面的研究进展,并对高黏附性超疏水表面未来的研究方向做出了展望。  相似文献   

7.
仿生超疏水性表面的生物应用   总被引:1,自引:0,他引:1  
梁伟欣  张亚斌  王奔  郭志光  刘维民 《化学学报》2012,70(23):2393-2403
自然给科学家和工程师带来仿生的灵感和启发. 近年来, 受自然界中荷叶的启发, 在充分考虑表面形貌和化学组成协同效应的基础上, 人们已经制备出许多仿生超疏水性表面, 这些表面在抗结冰、微流体、生物相容性等领域具有很多潜在的应用价值. 仿生超疏水性表面在生物领域的应用逐渐崭露头角, 研究发现, 超疏水性表面所俘获的空气能够减缓药物释放的速率, 因此利用此类表面作为药物的载体有望实现长期供药. 超疏水特性能在一定程度改善和提高生物体与材料表面之间的相互作用, 例如, 血小板几乎不在超疏水表面上进行粘附和活化避免了造成血栓和血凝, 因此仿生超疏水性表面可用于制备人造血管和与血液相接触的仪器. 细胞和生物分子在不同特殊润湿性表面具有不同的行为和现象, 如粘附、繁殖、吸附等差异, 这有助于进一步探索研究细胞和生物分子的信息功能, 是当前仿生超疏水性表面应用的重要研究方向之一. 本综述简单介绍了经典的润湿模型, 重点总结了仿生超疏水表面在生物领域的应用, 其主要包括控制药物释放、提高血液相容性、蛋白质吸附研究、细胞行为研究、生物分子和细胞微图案化等. 最后, 对仿生超疏水性表面在生物领域研究应用进行了展望.  相似文献   

8.
水下超疏油表面由于在防污材料、微流控技术、生物粘附等方面具有广泛的应用前景,已经引起人们的普遍关注。本文简单介绍了浸润性在液相体系的相关概念及基础理论,综述了自然界中的水下超疏油低粘附生物体典型实例以及水下超疏油仿生特殊粘附界面材料的仿生制备和智能调控,并对水下超疏油仿生界面材料的发展进行了展望。  相似文献   

9.
超疏水性表面的制备及应用进展   总被引:1,自引:0,他引:1  
侯磊鑫  方莉 《化学通报》2016,79(10):897-904
近年来,受荷叶、水黾腿、壁虎脚等天然超疏水生物表面特性的启发,研究者们进行了大量仿生超疏水表面材料的制备及应用研究。超疏水性表面因其特殊的微纳分层结构,具有自清洁、防覆冰、防腐蚀、减阻等优异性能。本文阐述了表面润湿、疏水的基本机理,以及超疏水表面研究的理论基础,对超疏水表面制备的最新研究进展进行了综述,并揭示了研究中存在的问题。最后,介绍了超疏水表面在涂料、织物、防腐、抗菌及防雾等领域中的应用,展望了其未来的研究方向和前景。  相似文献   

10.
频繁发生的石油泄漏事故以及工业含油污水的违规排放不仅造成了巨大的经济损失,而且严重破坏了人类赖以生存的生态环境。为了净化被油污染的水域,研究者们近年来开始研究出了各种特殊润湿性(如超疏水或超疏油)的材料用于实现油水分离。超疏水和超疏油可以通过设计材料表面的微观几何形貌和化学分子组成来获得。通过各种微纳制备手段使材料表现出对油和水截然相反的极端润湿性,是这类材料实现油水分离的关键所在。本文首先阐述了实现油水分离的重要意义,并介绍了材料表面润湿性的相关理论基础。根据材料对水和油所表现出的不同超疏液性与超亲液性,对油水分离材料从以下三类分别介绍:(ⅰ)超疏水/超亲油材料,(ⅱ)超疏油/超亲水材料,(ⅲ)智能响应润湿性材料。对于每一类油水分离材料,本文概括了国际上近期相关的代表性研究工作,包括材料的制备方法和实现油水分离的原理和过程,以及这些材料的主要特点和应用。最后,针对基于特殊润湿性材料实现油水分离,探讨了该研究领域目前存在的主要问题和面临的挑战,并对该领域的应用前景进行了展望。  相似文献   

11.
A typical superhydrophobic (ultrahydrophobic) surface can repel water droplets from wetting itself, and the contact angle of a water droplet resting on a superhydrophobic surface is greater than 150°, which means extremely low wettability is achievable on superhydrophobic surfaces. Many superhydrophobic surfaces (both manmade and natural) normally exhibit micro- or nanosized roughness as well as hierarchical structure, which somehow can influence the surface's water repellence. As the research into superhydrophobic surfaces goes deeper and wider, it is becoming more important to both academic fields and industrial applications. In this work, the most recent progress in preparing manmade superhydrophobic surfaces through a variety of methodologies, particularly within the past several years, and the fundamental theories of wetting phenomena related to superhydrophobic surfaces are reviewed. We also discuss the perspective of natural superhydrophobic surfaces utilized as mimicking models. The discussion focuses on how the superhydrophobic property is promoted on solid surfaces and emphasizes the effect of surface roughness and structure in particular. This review aims to enable researchers to perceive the inner principles of wetting phenomena and employ suitable methods for creation and modification of superhydrophobic surfaces.  相似文献   

12.
Bacterial adhesion and subsequent biofilm formation on the surfaces of synthetic materials imposes a significant burden in various fields, which can lead to infections in patients or reduce the service life of industrial devices. Therefore, there is increasing interest in imbuing surfaces with antibacterial properties. Bioinspired superhydrophobic surfaces with high water contact angles (>150°) exhibit excellent surface repellency against contaminations, thereby preventing initial bacterial adhesion and inhibiting biofilm formation. However, conventional superhydrophobic surfaces typically lack long-term durability and are incapable of achieving persistent efficacy against bacterial adhesion. To overcome these limitations, in recent decades, dual-function superhydrophobic antibacterial surfaces with both bacteria-repelling and bacteria-killing properties have been developed by introducing bactericidal components. These surfaces have demonstrated improved long-term antibacterial performance in addressing the issues associated with surface-attached bacteria. This review summarizes the recent advancements of these dual-function superhydrophobic antibacterial surfaces. First, a brief overview of the fabrication strategies and bacteria-repelling mechanism of superhydrophobic surfaces is provided and then the dual-function superhydrophobic antibacterial surfaces are classified into three types based on the bacteria-killing mechanism: i) mechanotherapy, ii) chemotherapy, and iii) phototherapy. Finally, the limitations and challenges of current research are discussed and future perspectives in this promising area are proposed.  相似文献   

13.
Self-assembly is the fundamental principle, which can occur spontaneously in nature. Through billions of years of evolution, nature has learned what is optimal. The optimized biological solution provides some inspiration for scientists and engineers. In the past decade, under the multi-disciplinary collaboration, bio-inspired special wetting surfaces have attracted much attention for both fundamental research and practical applications. In this review, we focus on recent research progress in bio-inspired special wetting surfaces via self-assembly, such as low adhesive superhydrophobic surfaces, high adhesive superhydrophobic surfaces, superamphiphobic surfaces, and stimuli-responsive surfaces. The challenges and perspectives of this research field in the future are also briefly addressed.  相似文献   

14.
具有微纳米结构超疏水表面润湿性的研究   总被引:4,自引:0,他引:4  
徐建海  李梅  赵燕  路庆华 《化学进展》2006,18(11):1425-1433
本文综述了近年来具有微纳米结构超疏水表面的研究进展。介绍了具有微纳米结构超疏水表面的制备方法,表面结构对超疏水性能的影响,周期性结构表面超疏水的条件,超疏水表面接触角滞后以及功能化超疏水表面等方面的研究,探讨了这一领域存在的问题及可能的发展方向。  相似文献   

15.
In recent decades, sustainable superhydrophobic surfaces from natural materials and sustainable processes have attracted increased interest due to their lower environmental footprint and potential applications in self-cleaning surfaces and biomedical devices. Although there is significant progress on selecting suitable nano and micro particles to prepare superhydrophobic surfaces, a comprehensive review on the direct use of sustainable colloidal particles (SCPs) is lacking. In this review, we highlight the recent advances on sustainable superhydrophobic surfaces using SCPs. The composition and properties, extraction methods, and chemical modifications are described, including cellulose nanocrystals, chitin/chitosan nanoparticles, and lignin nanoparticles. In addition to the physico–chemical properties and tunable dimensionality, the fabrication methodologies of superhydrophobic surfaces using modified colloids are described. Finally, the potential applications of these sustainable superhydrophobic surfaces ranging from oil/water separation, biomedical, water harvesting, biofabrication, microfluidic reactor, and food packaging are discussed together with a future perspective on the advances made.  相似文献   

16.
Researches on superhydrophobicity have been overwhelming and have shown great advantages in various fields. However, the abrasion resistance of superhydrophobic structures was usually poor, and they were easily damaged by external force or harsh environment, which greatly limited the applications of superhydrophobic surfaces. Much attention has been paid to improving the abrasion resistance of superhydrophobic materials by researchers. In this review, aimed at the advances on improving the abrasion resistance of superhydrophobic surfaces, it was summarized and compared three enhancement strategies including the reasonably design of micro-nano structures, the adoption of adhesives, and the preparation of self-healing surface. Finally, the applications of typical superhydrophobic materials with abrasion resistance were reviewed in various fields. In order to broaden the application fields of superhydrophobic materials, the abarasion resistance should be further improved. Therefore, we proposed the ideas for the future development of superhydrophobic materials with higher abrasion resistance. We hope that this review will provide a new approach to the preparation and development of stable superhydrophobic surfaces with higher abrasion resistance.  相似文献   

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