Heiman-Burstein Dafna, Dotan Anna, Dodiuk Hanna, Kenig Samuel
Department of Polymer Materials Engineering, The Pernick Faculty of Engineering Shenkar College, 12 Anna Frank Street, Ramat Gan 52526, Israel.
Polymers (Basel). 2021 Feb 12;13(4):539. doi: 10.3390/polym13040539.
Hybrid sol-gel superhydrophobic coatings based on alkyl silane-modified nanosilica were synthesized and studied. The hybrid coatings were synthesized using the classic Stöber process for producing hydrophilic silica nanoparticles (NPs) modified by the in-situ addition of long-chain alkyl silanes co-precursors in addition to the common tetraethyl orthosilicate (TEOS). It was demonstrated that the long-chain alkyl substituent silane induced a steric hindrance effect, slowing the alkylsilane self-condensation and allowing for the condensation of the TEOS to produce the silica NPs. Hence, following the formation of the silica NPs the alkylsilane reacted with the silica's hydroxyls to yield hybrid alkyl-modified silica NPs having superhydrophobic (SH) attributes. The resulting SH coatings were characterized by contact angle goniometry, demonstrating a more than 150° water contact angle, a water sliding angle of less than 5°, and a transmittance of more than 90%. Confocal microscopy was used to analyze the micro random surface morphology of the SH surface and to indicate the parameters related to superhydrophobicity. It was found that a SH coating could be obtained when the alkyl length exceeded ten carbons, exhibiting a raspberry-like hierarchical morphology.
合成并研究了基于烷基硅烷改性纳米二氧化硅的杂化溶胶-凝胶超疏水涂层。除了常见的正硅酸四乙酯(TEOS)外,通过经典的Stöber工艺合成杂化涂层,该工艺用于生产通过原位添加长链烷基硅烷共前驱体改性的亲水性二氧化硅纳米颗粒(NPs)。结果表明,长链烷基取代基硅烷产生了空间位阻效应,减缓了烷基硅烷的自缩合,并使TEOS缩合以生成二氧化硅NPs。因此,在二氧化硅NPs形成后,烷基硅烷与二氧化硅的羟基反应,生成具有超疏水(SH)特性的杂化烷基改性二氧化硅NPs。通过接触角测量对所得的SH涂层进行表征,结果表明水接触角大于150°,水滑动角小于5°,透光率大于90%。利用共聚焦显微镜分析了SH表面的微观随机表面形态,并指出了与超疏水性相关的参数。研究发现,当烷基长度超过十个碳时,可以获得SH涂层,呈现出类似覆盆子的分级形态。