首页> 外文期刊>Journal of Heat Transfer >High-Speed Surface Plasmon Resonance (SPR) Reflectance Imaging of Drop Coalescence during Condensation and Evaporation
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High-Speed Surface Plasmon Resonance (SPR) Reflectance Imaging of Drop Coalescence during Condensation and Evaporation

机译:凝结和蒸发过程中液滴聚结的高速表面等离子体共振(SPR)反射成像

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摘要

Drop condensation and coalescence is visualized using high-speed Surface Plasmon Resonance (SPR) reflectance microscopy. SPR microscopy is a label-free technique that can characterize thin films (less than 1μm) by detecting the changes in the refractive index of the test medium. The sensing surface is a 50 nm thick gold film on a 2.5 nm thick Ti layer is deposited on a borosilicate substrate. P-polarized monochromatic light (632 nm) is incident on the gold film in a total internal reflection mode. Free electrons in the gold film are excited by the incident light when a resonance condition is met. The result is a decrease in the reflected intensity. Resonance depends upon wavelength, incident angle, and refractive index of prism and test medium. To induce condensation, a water bridge is created between the SPR gold film and an ITO coated glass slide. When the ITO coated slide is heated water evaporates from the bridge and condenses on the gold film. The sequence of images on the process of droplet deposition and drop coalescence are captured at 1500 frames per second. Experiments were conducted at an SPR angle of 44°, which is slightly above the minimum intensity angle for air at 43.8°. Therefore, the brightest and darkest regions correspond to the areas on the gold film covered with bulk water and a very thin film of water, respectively. The thickness of the film is proportional to the intensity of reflected light.
机译:使用高速表面等离振子共振(SPR)反射显微镜可以观察到液滴的凝结和聚结。 SPR显微镜是一种无标记技术,可通过检测测试介质的折射率变化来表征薄膜(小于1μm)。感测表面是在硼硅酸盐衬底上沉积的2.5 nm厚的Ti层上的50 nm厚的金膜。 P偏振单色光(632 nm)以全内反射模式入射到金膜上。当满足共振条件时,金膜中的自由电子被入射光激发。结果是反射强度降低。共振取决于波长,入射角以及棱镜和测试介质的折射率。为了引起冷凝,在SPR金膜和ITO涂层玻璃载玻片之间建立了水桥。当涂有ITO的载玻片加热时,水从桥上蒸发并凝结在金膜上。液滴沉积和液滴聚结过程中的图像序列以每秒1500帧的速度捕获。实验以44°的SPR角进行,该角度略高于43.8°的空气的最小强度角。因此,最亮和最暗的区域分别对应于金膜上被大量水和非常薄的水覆盖的区域。膜的厚度与反射光的强度成正比。

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