论文标题
液体异质结构:自由流动液体板中液态液体界面的产生
Liquid Heterostructures: Generation of Liquid-Liquid Interfaces in Free-Flowing Liquid Sheets
论文作者
论文摘要
化学反应和生物过程通常受两个液相之间界面的结构和运输动力学的控制。尽管它们的重要性,但我们对液体液体界面的微观理解受到了难以通过大量液体进入界面的困难。在这里,我们演示了一种在自由流动的液体板上生成大面积液态界面的方法,我们称之为液体异质结构。可以使这些板足够稀释以从光谱中传输光子,这也可以最大程度地减少相对于界面的散装液体的数量,并使它们成为广泛光谱和散射实验的理想目标。这些床单是用微流体喷嘴生产的,该喷嘴将一种液体的两个收敛喷气式撞到了另一种液体的第三个射流的两个侧面。碰撞喷气机提供的流体动力都产生了带有中央射流的多层层状液体板,中间是扁平的。红外显微镜,白光反射率和成像椭圆法测量表明,埋入的层具有可调的厚度,并显示出明确定义的液态液体接口,并且内层可能比100 nm更薄。
Chemical reactions and biological processes are often governed by the structure and transport dynamics of the interface between two liquid phases. Despite their importance, our microscopic understanding of liquid-liquid interfaces has been severely hindered by difficulty in accessing the interface through the bulk liquid. Here we demonstrate a method for generating large-area liquid-liquid interfaces within free-flowing liquid sheets, which we call liquid heterostructures. These sheets can be made thin enough to transmit photons from across the spectrum, which also minimizes the amount of bulk liquid relative to the interface and makes them ideal targets for a wide range of spectroscopies and scattering experiments. The sheets are produced with a microfluidic nozzle that impinges two converging jets of one liquid onto two sides of a third jet of another liquid. The hydrodynamic forces provided by the colliding jets both produce a multilayered laminar liquid sheet with the central jet is flattened in the middle. Infrared microscopy, white light reflectivity, and imaging ellipsometry measurements demonstrate that the buried layer has a tunable thickness and displays well-defined liquid-liquid interfaces, and that the inner layer can be thinner than 100 nm.