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Optical characterization of surface adlayers and their compositional demixing at the nanoscale

机译:表面添加剂的光学表征及其在纳米尺度上的成分分解

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摘要

Under ambient conditions, the behavior of a solid surface is often dominated by a molecularly thin adsorbed layer (adlayer) of small molecules. Here we develop an optical approach to unveil the nanoscale structure and composition of small-molecule adlayers on glass surfaces through spectrally resolved super-resolution microscopy. By recording the images and emission spectra of millions of individual solvatochromic molecules that turn fluorescent in the adlayer phase, we obtain ~30 nm spatial resolution and achieve concurrent measurement of local polarity. This allows us to establish that the adlayer dimensionality gradually increases through a sequence of 0D (nanodroplets), 1D (nano-lines), and 2D (films) for liquids of increasing polarity. Moreover, we find that in adlayers, a solution of two miscible liquids spontaneously demixes into nanodroplets of different compositions that correlate strongly with droplet size and location. We thus reveal unexpectedly rich structural and compositional behaviors of surface adlayers at the nanoscale.
机译:在环境条件下,固体表面的行为通常由小分子的薄分子吸附层(附加层)决定。在这里,我们开发了一种光学方法,通过光谱分辨超分辨率显微镜揭示了玻璃表面上纳米分子的纳米级结构和组成。通过记录数百万个在吸附层相中变成荧光的溶剂化变色分子的图像和发射光谱,我们获得了〜30 nm的空间分辨率,并实现了对局部极性的同时测量。这使我们可以确定极性增加的液体的层厚度通过一系列0D(纳米液滴),1D(纳米线)和2D(薄膜)逐渐增加。此外,我们发现在添加层中,两种可混溶液体的溶液自发地分解成不同组成的纳米液滴,这些液滴与液滴的大小和位置密切相关。因此,我们揭示了纳米级表面添加剂的出乎意料的丰富结构和组成行为。

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