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Highly Reflective Liquid Mirrors: Exploring the Effects of Localized Surface Plasmon Resonance and the Arrangement of Nanoparticles on Metal Liquid-like Films

机译:高反射液体镜:探讨局部表面等离激元共振和纳米粒子在类金属液膜上的排列的影响

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In this paper, we describe a high-reflectance liquid mirror prepared from densely packed silver nanoparticles (AgNPs) of two different sizes. We controlled the particle size during the synthetic process by controlling the temperature. Varying the concentration of the ligand also allowed us to optimize the arrangement of the AgNPs to achieve liquid mirrors exhibiting high specular reflectance. Scanning electron microscopy and'atomic force microscopy confirmed that the particles of the liquid mirror were well-packed with an interparticle distance of merely 2 nm; thus, the interstices and surface roughness of the NPs were effectively minimized. As a result of decreased scattering, loss, the reflectance in the shorter wavelength regime was increased effectively. The AgNP film was also sufficiently thick to reflect the light in the longer wavelength regime. In addition, we used three-dimensional finite-difference time domain simulations and experimental measurements to investigate the relationship between the localized surface plasmon resonance (LSPR) and the specular reflection of the liquid mirrors. By changing the packing density of the AgNPs, we found that the LSPR effect could yield either a specular reflection peak or dip at the LSPR wavelengths in the reflection spectra of the liquid mirrors. Relative to previously reported liquid mirrors, the reflectance of our system is obviously much greater, especially in the shorter wavelength regime. The average reflectance in the range from 400 to 1000 nm could reach 77%, comparable with that of mercury-based liquid mirrors.
机译:在本文中,我们描述了由两种不同尺寸的密集堆积的银纳米颗粒(AgNP)制备的高反射率液体镜。我们通过控制温度来控制合成过程中的粒径。改变配体的浓度还使我们能够优化AgNP的排列,以实现具有高镜面反射率的液体镜。扫描电子显微镜和原子力显微镜证实液体镜的颗粒被很好地堆积,颗粒间的距离仅为2nm。因此,NP的空隙和表面粗糙度被有效地最小化。由于散射,损耗的减少,有效地提高了较短波长范围内的反射率。 AgNP膜也足够厚以反射较长波长范围内的光。此外,我们使用了三维有限差分时域模拟和实验测量来研究局部表面等离振子共振(LSPR)和液体镜的镜面反射之间的关系。通过改变AgNPs的堆积密度,我们发现LSPR效应可以在液体镜的反射光谱中的LSPR波长处产生镜面反射峰或谷值。相对于以前报道的液镜,我们系统的反射率显然要大得多,尤其是在较短的波长范围内。在400至1000 nm范围内的平均反射率可以达到77%,与基于汞的液体镜相当。

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