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首页> 外文期刊>CERAMICS INTERNATIONAL >Polydimethylsiloxanes-modified TiO2 coatings: The role of structural, morphological and optical characteristics in a self-cleaning surface
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Polydimethylsiloxanes-modified TiO2 coatings: The role of structural, morphological and optical characteristics in a self-cleaning surface

机译:聚二甲基硅氧烷改性TiO2涂层:在自清洁表面中结构,形态和光学特性的作用

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摘要

The surface modification of TiO2 thin film with hydrophobic agents has been a good strategy for modulation properties of this versatile material, allowing it to be compatible with a wider range of applications. This is a promising approach in the developing of improved self-cleaning materials; since films prepared with this modification are expected to exhibit photocatalytic and hydrophobic properties. However, these strategies still need to be improved, seeking the design of hydrophobic and photocatalytic structures through faster and simpler procedures, using non-fluorinated polymers. This work proposed the synthesis and characterization of self-cleaning coatings, involving a polydimethylsiloxane (PDMS)/TiO2 system. TiO2 thin films were modified with two different types of PDMS: hydroxyl and vinyl-terminated - and prepared by two distinct routes: Route A, which involved a modified TiO2 sol-gel process, and route B, consisting in the functionalization of TiO2 films after their calcination. Each route was best suited for a different type of PDMS. The PDMS modification occurred by a covalent linkage, which can allow a better durability of the functionalization on TiO2 surface. In some cases, the functionalization was heterogeneous and promoted a significant increase in surface roughness, allowing these samples to present hydrophobicity and photocatalytic activity.
机译:TiO2薄膜具有疏水剂的表面改性是这种通用材料的调制性能的良好策略,使其与更广泛的应用相容。这是一种有希望的方法,即改进的自清洁材料;由于预期使用该修饰制备的薄膜表现出光催化和疏水性质。然而,使用非氟化聚合物,仍然需要改善这些策略,从而通过更快,更简单的程序设计疏水和光催化结构。这项工作提出了自清洁涂层的合成和表征,包括聚二甲基硅氧烷(PDMS)/ TiO2系统。用两种不同类型的PDMS改性TiO2薄膜:羟基和乙烯基封端 - 并通过两个不同的途径制备:涉及改性TiO 2溶胶加工的载体和B型在TiO 2膜的官能化之后他们的煅烧。每条路线最适合不同类型的PDMS。通过共价连杆发生PDMS修饰,这可以允许在TiO 2表面上允许官能化的更好耐久性。在一些情况下,官能化是异质的并且促进表面粗糙度的显着增加,使这些样品呈现疏水性和光催化活性。

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