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用全氟试剂改性的坚硬且柔韧的透明超疏水GPOSS涂层。

Hard yet Flexible Transparent Omniphobic GPOSS Coatings Modified with Perfluorinated Agents.

作者信息

Bender Desiree N, Zhang Kaka, Wang Jiandong, Liu Guojun

机构信息

Department of Chemistry, Queen's University, 90 Bader Lane, Kingston, Ontario, Canada K7L 3N6.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 3;13(8):10467-10479. doi: 10.1021/acsami.0c23151. Epub 2021 Feb 17.

Abstract

Transparent materials with glasslike hardness and polymer-like flexibility are highly useful but rare. This paper reports the incorporation of the low-surface-tension pentafluoropropionic acid (FC-COOH) or tridecafluoroheptanoic acid (FC-COOH) into a 3-glycidyloxypropyl polyhedral oligomeric silsesquioxane (GPOSS) coating to yield hard/flexible omniphobic coatings. To avoid the macrophase separation of these additives from GPOSS and thus maintain the coating's high transparency, they are first reacted with excess GPOSS via the opening of the glycidyl rings with the carboxy groups to produce mixtures of GPOSS and GPOSS-FC or GPOSS-FC. The fluorinated GPOSS mixtures are then photochemically cured. This study investigates the influence of the type and amount of a fluorinated agent used on the wetting and mechanical properties of the coatings. The wetting properties studied include surface energies, liquid sliding behavior, and repellency against an artificial fingerprint liquid. Meanwhile, the mechanical properties include pencil hardness, Young's modulus, hardness, and resistance to abrasion by steel wool and cheesecloth. Aside from producing coatings that may serve as a viable alternative for the currently used hard/flexible coatings in foldable smartphones, this paper provides guidelines for producing coatings with further improved omniphobicity and wear resistance.

摘要

具有玻璃般硬度和聚合物般柔韧性的透明材料非常有用,但却很罕见。本文报道了将低表面张力的五氟丙酸(FC - COOH)或十三氟庚酸(FC - COOH)掺入3 - 缩水甘油氧基丙基多面体低聚倍半硅氧烷(GPOSS)涂层中,以制备坚硬/柔韧的超疏水涂层。为避免这些添加剂与GPOSS发生宏观相分离,从而保持涂层的高透明度,首先使它们通过羧基打开缩水甘油环与过量的GPOSS反应,生成GPOSS与GPOSS - FC或GPOSS - FC的混合物。然后对氟化GPOSS混合物进行光化学固化。本研究考察了所用氟化剂的类型和用量对涂层润湿性和机械性能的影响。所研究的润湿性包括表面能、液体滑动行为以及对人工指纹液体的排斥性。同时,机械性能包括铅笔硬度、杨氏模量、硬度以及耐钢丝绒和粗棉布磨损性。除了制备出可作为目前可折叠智能手机中使用的坚硬/柔韧涂层的可行替代品的涂层外,本文还为制备具有进一步改善的超疏水性和耐磨性的涂层提供了指导方针。

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