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Study on the high hydrophobicity and its possible mechanism of textile fabric with structural colors of three-dimensional poly(styrene-methacrylic acid) photonic crystals

机译:三维聚(苯乙烯-甲基丙烯酸)光子晶体结构色对织物的高疏水性及其可能机理的研究

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摘要

In our previous research, the structural color properties of poly(styrene-methacrylic acid) (P(St-MAA)) photonic crystals fabricated on soft textile fabrics by colloidal self-assembly method has been investigated. However, the hydrophobicity property of the resultant textile fabrics was rarely reported. Through the application of field emission scanning electron microscopy (FESEM), atomic force microscopy (AFM) and wettability analyses, a possible mechanism of hydrophobicity of resultant textile fabrics was proposed. It was confirmed that the hydrophobic P(St-MAA) colloidal microspheres could almost completely fill in most of the gaps of textile fabrics and form a uniform photonic crystal film on textile fabrics in the end of the assembly process, which effectively prevents water droplets from infiltrating through the surface of fabrics. Moreover, the minute protrusions on each P(St-MAA) colloidal microsphere surface and as-prepared regular rough photonic crystal array were combined to form a double-rough structure similar to the morphology of a lotus leaf, which could greatly enhance the hydrophobicity of the resultant textile fabrics.
机译:在我们先前的研究中,已经研究了通过胶体自组装法在软织物上制备的聚苯乙烯-甲基丙烯酸(P(St-MAA))光子晶体的结构颜色特性。但是,几乎没有报道所得织物的疏水性。通过应用场发射扫描电子显微镜(FESEM),原子力显微镜(AFM)和润湿性分析,提出了所得织物疏水性的可能机理。证实了疏水性P(St-MAA)胶体微球几乎可以完全填充织物的大部分缝隙,并在组装过程结束时在织物上形成均匀的光子晶体膜,从而有效地防止了水滴的扩散。渗透到织物的表面。此外,在每个P(St-MAA)胶体微球表面上的微小突起和准备好的规则粗糙光子晶体阵列相结合,形成了类似于荷叶形态的双重粗糙结构,这可以大大增强其疏水性。所得的纺织面料。

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