首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Wettability Analysis of Water on Metal/Semiconductor Phases Selectively Structured with Femtosecond Laser-Induced Periodic Surface Structures
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Wettability Analysis of Water on Metal/Semiconductor Phases Selectively Structured with Femtosecond Laser-Induced Periodic Surface Structures

机译:用Femtosecond激光诱导的周期性表面结构选择性地构造金属/半导体阶段水的润湿性分析

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Femtosecond (fs) laser-induced periodic surface structures (LIPSS) were selectively generated on the surface of an Ag-Si alloy consisting of a metallic and a semiconducting phase. For this purpose, the alloy was irradiated with linearly polarized fs-laser pulses (tau = 300 fs, lambda = 1025 nm, f(rep) = 100 kHz) using a laser peak fluence F = 0.30 J/cm(2). Due to the different light absorption behaviors of the semiconductor (Si) and the metal (Ag) phases that result in different ablation thresholds of the respective phases, pronounced LIPSS with a period of Lambda approximate to 950 nm and a modulation depth of h approximate to 220 nm were generated solely on the Si phase. The alloy surface was characterized by scanning electron microscopy, optical microscopy, white-light interference microscopy, and atomic force microscopy before and after laser irradiation. The chemical analysis was carried out by energy-dispersive X-ray spectroscopy, revealing surface oxidation of the Si phase and no laser-induced chemical modification of the Ag phase. The surface wettability of the alloy was evaluated with distilled water and compared to those of the single constituents of the composites. After fs-laser irradiation, the surface is characterized by a reduced hydrophilic water contact angle. Furthermore, the alloy selectively structured with LIPSS revealed a droplet shape change due to the distinctly different contact angles on the Si (theta = 5 degrees) and Ag (theta = 74 degrees) phases. This phenomenon was evaluated and discussed by local contact angle analyses using a confocal laser scanning microscope and Rhodamine B dye. In addition, it was shown that the shape change due to different contact angles of the components allowed a targeted droplet movement on a macroscopic material boundary (Ag/Si) of the alloy. Selectively structured metal/semiconductor surfaces might be of particular interest for microfluidic devices with a directional droplet movement and for the fundamental research of wettability.
机译:在由金属和半导体相位组成的Ag-Si合金的表面上选择性地产生飞秒(FS)激光诱导的周期性表面结构(嘴唇)。为此目的,使用激光峰值F = 0.30J / cm(2),用线性偏振的FS激光脉冲(Taum = 300 fs,Lambda = 1025nm,F(Rep)= 100kHz)用线性偏振的Fs-激光脉冲(Taum = 300 fs,= 100kHz)照射合金。由于半导体(Si)的不同光吸收行为和导致各相的不同消融阈值的金属(Ag)相,具有λ的周期近似为950nm的发音嘴唇和H近似的调制深度。仅在Si相上产生220nm。通过扫描电子显微镜,光学显微镜,白光干扰显微镜和激光照射前后的原子力显微镜,其特征在于,合金表面的特征在于。通过能量分散X射线光谱进行化学分析,揭示了Si相的表面氧化,没有激光诱导的Ag相的化学改性。用蒸馏水评价合金的表面润湿性,并与复合材料的单个成分的相比。在FS-激光照射之后,表面的特征在于降低的亲水性水接触角。此外,用唇缘选择性地构造的合金显示出由于Si(θ= 5度)和Ag(θ= 74度)相的明显不同的接触角而导致液滴形状变化。通过使用共聚焦激光扫描显微镜和罗丹明B染料通过局部接触角分析评估和讨论这种现象。另外,结果表明,由于部件的不同接触角引起的形状变化允许在合金的宏观材料边界(Ag / Si)上的靶液滴运动。选择性地结构的金属/半导体表面对于具有定向液滴运动的微流体装置和对润湿性的基本研究来说可能特别令人兴趣。

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