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首页> 外文期刊>Journal of nanomaterials >Directed Hierarchical Patterning of Polycarbonate Bisphenol A Glass Surface along Predictable Sites
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Directed Hierarchical Patterning of Polycarbonate Bisphenol A Glass Surface along Predictable Sites

机译:沿可预测部位的聚碳酸酯双酚A玻璃表面的定向分层构图

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This paper reports a new approach in designing textured and hierarchical surfaces on polycarbonate bisphenol A type glass to improve hydrophobicity and dust repellent application for solar panels. Solvent- and vapor-induced crystallization of thermoplastic glass polycarbonate bisphenol A (PC) is carried out to create hierarchically structured surfaces. In this approach dichloromethane (DCM) and acetone are used in sequence. Samples are initially immersed in DCM liquid to generate nanopores, followed by exposing to acetone vapor resulting in the generation of hierarchical structure along the interporous sites. The effects of exposure time on the size, density, and distance of the generated spherules and gaps are studied and correlated with the optical transmittance and contact angle measurements at the surface. At optimized exposure time a contact angle of 98° was achieved with 80% optical transmittance. To further increase the hydrophobicity while maintaining optical properties, the hierarchical surfaces were coated with a transparent composite of tetraethyl orthosilicate as precursor and hexamethyldisilazane as silylation agent resulting in an average contact angle of 135.8° and transmittance of around 70%. FTIR and AFM characterization techniques are employed to study the composition and morphology of the generated surfaces.
机译:本文报道了一种在聚碳酸酯双酚A型玻璃上设计纹理化和分层表面的新方法,以改善太阳能面板的疏水性和防尘性。进行热塑性玻璃聚碳酸酯双酚A(PC)的溶剂和气相诱导结晶,以创建分层结构的表面。在这种方法中,依次使用二氯甲烷(DCM)和丙酮。首先将样品浸入DCM液体中以产生纳米孔,然后将其暴露于丙酮蒸气中,从而沿孔位生成分层结构。研究了曝光时间对所产生的小球和缝隙的尺寸,密度和距离的影响,并将其与表面的光学透射率和接触角测量结果相关联。在最佳的曝光时间下,可实现98°的接触角和80%的透光率。为了在保持光学性能的同时进一步增加疏水性,在分层表面上涂覆了原硅酸四乙酯作为前体和六甲基二硅氮烷作为甲硅烷基化剂的透明复合物,平均接触角为135.8°,透射率约为70%。 FTIR和AFM表征技术用于研究所生成表面的组成和形态。

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