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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >GO@CuSilicate nano-needle arrays hierarchical structure: a new route to prepare high optical transparent, excellent self-cleaning and anticorrosion superhydrophobic surface
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GO@CuSilicate nano-needle arrays hierarchical structure: a new route to prepare high optical transparent, excellent self-cleaning and anticorrosion superhydrophobic surface

机译:GO @ Cusilemate纳米针阵列等级结构:一种制备高光学透明,优异的自清洁和防腐超散液面的新途径

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摘要

Transparent superhydrophobic coatings, which are highly desired for the protection of material surfaces, have been limited to particular kinds of materials, e.g. silicon dioxide. In this work, a hybrid compound of graphene oxide and copper silicate with hierarchical structure was developed and was used to fabricate coatings. Due to the high transparency of graphene oxide and the nanoscopic roughness created by nanoneedles of CuSilicate, with very low compound loading (0.052 mg/cm(2)), the as-prepared coating was found not only showing superhydrophobic properties with a water contact angle (CA) of similar to 152 degrees and a near zero sliding angle (SA) of 0.5 but also showing high optical transparent (light transmittance is as high as 94.5 % at 500 nm). Furthermore, this surface also showed efficient anticorrosion properties and excellent self-cleaning ability. This study not only fabricated a new surface with transparency and surperhydrophobicity based on graphene materials, but also hopefully offers a method for the fabrication of multifunctional coatings.
机译:透明超疏水涂层,这是保护材料表面的保护,这些涂层非常需要的是,仅限于特定的材料,例如,材料。二氧化硅。在这项工作中,开发了一种杂种氧化物和具有等级结构的硅酸盐的杂化化合物,并用于制造涂料。由于石墨烯氧化物的高透明度和由纳米硅酸盐产生的纳米镜粗糙度,具有非常低的复合载荷(0.052mg / cm(2)),发现原制涂层不仅显示出具有水接触角的超疏水性能(CA)类似于152度和0.5的接近零滑动角(SA),但也显示出高光学透明(透光率高达500nm的94.5%)。此外,该表面还显示出有效的防腐性能和优异的自清洁能力。本研究不仅制造了基于石墨烯材料的透明度和外散度的新表面,而且希望提供一种制造多功能涂层的方法。

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