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APS -APS March Meeting 2017 - Event - Influence of self-ordered Au nanoparticles on chemically textured Si surfaces with improved antireflection and hydrophobicity.

机译:APS -APS 2017年3月会议-活动-自订金纳米粒子对化学织构化的Si表面的影响,具有改善的抗反射性和疏水性。

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A facile approach to improve hydrophobicity of chemically etched Si pyramids is presented by introducing Au nanoparticles (NPs). Initially, a clear transformation of pristine Si from hydrophilic to hydrophobic is established by chemical texturing, and manifested by observing an increase in contact angle (CA) from 58$^{mathrm{0hinspace }}$to 98$^{mathrm{0}}$. X-ray diffraction studies reveal the evolution of a tensile strain in microscale Si pyramids followed by the formation of conformal Au layers without showing any significant change in CA (96$^{mathrm{0}})$. However, the development of Au NPs with additional self-ordered structures at the pyramid edges at 400 $^{mathrm{0}}$C gives a sharp rise in CA up to 118$^{mathrm{0}}$, while the underlying phenomenon has been discussed in the light of a decrease in solid fractional surface area according to the Wenzel model. Detailed transmission electron microscopy investigations, however, suggest that Au and Si are immiscible at the Au/Si interfaces. Moreover, a sharp reduction of specular reflectance, especially in the ultraviolet region up to 0.4 {%} has been manifested from ultraviolet-visible spectroscopy and discussed in details.
机译:通过引入金纳米粒子(NPs),提出了一种提高化学蚀刻Si金字塔疏水性的简便方法。最初,通过化学纹理化将原始Si从亲水性明显转变为疏水性,并通过观察接触角(CA)从58 $ ^ {mathrm {0hinspace}} $增至98 $ ^ {mathrm {0}来证明} $。 X射线衍射研究揭示了微尺度Si金字塔中拉伸应变的演变,随后形成了保形Au层,而CA(96 $ ^ {mathrm {0}})$却没有任何显着变化。但是,在金字塔边缘以400 $ ^ {mathrm {0}} $ C处具有附加自序结构的Au NP的发展使CA急剧上升,达到118 $ ^ {mathrm {0}} $,而根据Wenzel模型,已经根据固体分数表面积的减少讨论了潜在的现象。然而,详细的透射电子显微镜研究表明,Au和Si在Au / Si界面不溶混。此外,已经从紫外可见光谱法中观察到镜面反射率急剧下降,特别是在高达0.4 {%}的紫外线区域中,并进行了详细讨论。

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