National Institute of Advanced Industrial Science and Technology (AIST), 2266-98, Anagahora, Shimo-shidami, Moriyama, Nagoya 463-8560, Japan.
Department of Chemical and Biological Engineering, University of Sheffield, Sheffield, UK.
J Hazard Mater. 2020 Nov 5;398:122625. doi: 10.1016/j.jhazmat.2020.122625. Epub 2020 May 18.
From a viewpoint of reducing the burden on both human health and the environment, alternative surface modification techniques for preparing highly water-repellent surfaces without the use of environmentally damaging perfluorocarbons are highly desirable. Among them, the development of hydrophilic surfaces showing superior water sliding/removal properties has been scarcely reported. In this study, we have successfully demonstrated the fabrication of smooth, transparent, and hydrophilic pegylated organosilanes (PEG-Si, CHO-(CHO)-CH-Si(OCH) where n = 3, 6-9, 9-12)-derived hybrid films showing excellent water sliding/removal properties using a simple sol-gel reaction of PEG-Si and tetraethoxysilane (TEOS, Si(OCH)). The final static/dynamic surface wetting properties of the samples were found to be significantly influenced by both the PEG chain length and their mixing ratios. The use of PEG-Si with the longest PEG chain (n = 9-12) was found to be effective for improving water sliding/removal properties. Small volume water droplets (5 μL) on the PEG-Si/TEOS hybrid film (static water contact angle (CA) of ∼40°) at a 90°-inclined surface could slide at an average speed of 3.4 mm/sec without pinning and tailing, which was about twice as fast as that on the PEG-Si/TEOS hybrid film surface (1.5 mm/sec, static water CA of ∼40°), in spite of having similar static hydrophilic nature.
从减轻人类健康和环境负担的角度来看,开发替代的表面改性技术来制备高度疏水的表面而不使用对环境有害的全氟碳化合物是非常可取的。在这些方法中,很少有报道开发具有优越水滑动/去除性能的亲水表面。在这项研究中,我们成功地展示了使用简单的 PEG-Si 和四乙氧基硅烷(TEOS,Si(OCH))的溶胶-凝胶反应,制备出光滑、透明和具有良好亲水性能的 PEG 修饰有机硅烷(PEG-Si,CHO-(CHO)-CH-Si(OCH),其中 n=3,6-9,9-12)衍生的混合薄膜,具有优异的水滑动/去除性能。样品的最终静态/动态表面润湿性明显受到 PEG 链长和它们混合比例的影响。使用最长 PEG 链(n=9-12)的 PEG-Si 被发现是提高水滑动/去除性能的有效方法。在 90°倾斜表面上,小体积(5 μL)的水滴(静态水接触角(CA)约为 40°)在 PEG-Si/TEOS 杂化膜上可以以平均速度 3.4mm/sec 滑动,没有钉扎和尾流,这比在 PEG-Si/TEOS 杂化膜表面上(1.5mm/sec,静态水 CA 约为 40°)快两倍,尽管具有相似的静态亲水性质。