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首页> 外文期刊>Nanotechnology >Fabrication of ultrathin multilayered superomniphobic nanocoatings by liquid flame spray, atomic layer deposition, and silanization
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Fabrication of ultrathin multilayered superomniphobic nanocoatings by liquid flame spray, atomic layer deposition, and silanization

机译:用液体火焰喷雾,原子层沉积和硅烷制备超薄多层超级肌纳米型纳米织物

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Superomniphobic, i.e. liquid-repellent, surfaces have been an interesting area of research during recent years due to their various potential applications. However, producing such surfaces, especially on hard and resilient substrates like stainless steel, still remains challenging. We present a stepwise fabrication process of a multilayered nanocoating on a stainless steel substrate, consisting of a nanoparticle layer, a nanofilm, and a layer of silane molecules. Liquid flame spray was used to deposit a TiO2 nanoparticle layer as the bottom layer for producing a suitable surface structure. The interstitial Al2O3 nanofilm, fabricated by atomic layer deposition (ALD), stabilized the nanoparticle layer, and the topmost fluorosilane layer lowered the surface energy of the coating for enhanced omniphobicity. The coating was characterized with field emission scanning electron microscopy, focused ion beam scanning electron microscopy, x-ray photoelectron spectroscopy, contact angle (CA) and sliding angle (SA) measurements, and microscratch testing. The widely recognized requirements for superrepellency, i.e. CA 150 degrees and SA 10 degrees, were achieved for deioinized water, diiodomethane, and ethylene glycol. The mechanical stability of the coating could be varied by tuning the thickness of the ALD layer at the expense of repellency. To our knowledge, this is the thinnest superomniphobic coating reported so far, with the average thickness of about 70 nm.
机译:Superomniphobic,即液体驱蚊,表面是由于其各种潜在应用的近年来的一个有趣的研究领域。然而,制造这种表面,特别是在类似于不锈钢的硬质和弹性基板上,仍然仍然具有挑战性。我们在不锈钢基板上呈现多层纳米织物的逐步制造过程,由纳米颗粒层,纳米膜和一层硅烷分子组成。用于将TiO 2纳米颗粒层沉积为底层的液体火焰喷雾,以产生合适的表面结构。由原子层沉积(ALD)制造的间质Al2O3纳米丝,稳定纳米颗粒层,最顶部的氟硅烷层降低了涂层的表面能,用于增强的型无毒性。涂层的特征在于现场发射扫描电子显微镜,聚焦离子束扫描电子显微镜,X射线光电子谱,接触角(CA)和滑动角度(SA)测量和微旋转测试。广泛认可的超级精油,即CA> 150度和SA&脱氧水,二碘甲烷和乙二醇实现了10度。通过以牺牲防护性的牺牲层调节ALD层的厚度,可以改变涂层的机械稳定性。据我们所知,这是迄今为止报道的最薄的超级肌瘤涂层,平均厚度约为70nm。

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