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A review focused on the superhydrophobic fabrics with functional properties
Journal of Applied Polymer Science ( IF 2.7 ) Pub Date : 2023-02-04 , DOI: 10.1002/app.53664 Sagayanathan Antinate Shilpa 1 , Annadurai Kavitha Sri 1 , Robert Bellabai Jeen Robert 2 , Muthuswamy Shanmugasundaram Subbulakshmi 3 , Gnanadhas Sobhin Osannal Hikku 1
Journal of Applied Polymer Science ( IF 2.7 ) Pub Date : 2023-02-04 , DOI: 10.1002/app.53664 Sagayanathan Antinate Shilpa 1 , Annadurai Kavitha Sri 1 , Robert Bellabai Jeen Robert 2 , Muthuswamy Shanmugasundaram Subbulakshmi 3 , Gnanadhas Sobhin Osannal Hikku 1
Affiliation
Superhydrophobic (SH) property is a naturally occurring phenomenon that has a wide range of potential applications such as antiicing, anticorrosion, electrowetting, blood typing, and so forth, and therefore, inspires the researchers to mimic them over artificial surfaces to achieve desired properties. Low surface energy and suitable surface roughness are the two key factors that play a vital role in developing SH surfaces. Hence, when the target substrate is introduced with suitable roughness and consequently functionalized with low surface energy, SH can be incorporated. Owing to the SH's wide range of inherent properties such as stain-resistant, self-cleaning, flame retardant, oil/water separation, and so forth as well as tunable functionalities such as electrical conductivity, photocatalytic activity, UV-protection, and so forth, the development of SH fabrics has gained a lot of research attention in recent years. In this context, the present review focuses on the different applications of SH fabrics and their recent research progress.
中文翻译:
对具有功能特性的超疏水织物的综述
超疏水 (SH) 特性是一种自然发生的现象,具有广泛的潜在应用,如防冰、防腐、电润湿、血型等,因此,激发研究人员在人造表面上模拟它们以获得所需的特性。低表面能和合适的表面粗糙度是在开发 SH 表面中起重要作用的两个关键因素。因此,当目标基板具有合适的粗糙度并因此以低表面能功能化时,可以掺入 SH。由于 SH 具有广泛的固有特性,如耐污、自清洁、阻燃、油水分离等,以及可调的功能,如导电性、光催化活性、紫外线防护等, 近年来,SH织物的开发得到了很多研究关注。在此背景下,本综述重点介绍了 SH 织物的不同应用及其近期研究进展。
更新日期:2023-02-04
中文翻译:
对具有功能特性的超疏水织物的综述
超疏水 (SH) 特性是一种自然发生的现象,具有广泛的潜在应用,如防冰、防腐、电润湿、血型等,因此,激发研究人员在人造表面上模拟它们以获得所需的特性。低表面能和合适的表面粗糙度是在开发 SH 表面中起重要作用的两个关键因素。因此,当目标基板具有合适的粗糙度并因此以低表面能功能化时,可以掺入 SH。由于 SH 具有广泛的固有特性,如耐污、自清洁、阻燃、油水分离等,以及可调的功能,如导电性、光催化活性、紫外线防护等, 近年来,SH织物的开发得到了很多研究关注。在此背景下,本综述重点介绍了 SH 织物的不同应用及其近期研究进展。