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Generation of ultrathin free-flowing liquid sheets

机译:产生超薄自由流动的液体板

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摘要

The physics and chemistry of liquid solutions play a central role in science, and our understanding of life on Earth. Unfortunately, key tools for interrogating aqueous systems, such as infrared and soft X-ray spectroscopy, cannot readily be applied because of strong absorption in water. Here we use gas dynamic forces to generate free-flowing, sub-micron, liquid sheets which are 2 orders of magnitude thinner than anything previously reported. Optical, infrared and X-ray spectroscopies are used to characterize the sheets, which are found to be tunable in thickness from over 1 micron down to less than 20 nanometers, which corresponds to fewer than 100 water molecules thick. At this thickness, aqueous sheets can readily transmit photons across the spectrum, leading to potentially transformative applications in infrared, X-ray, electron spectroscopies and beyond. The ultrathin sheets are stable for days in vacuum, and we demonstrate their use at free-electron laser and synchrotron light sources.
机译:液体溶液的物理和化学发挥科学中心作​​用,我们的地球上生活的理解。不幸的是,关键工具用于询问含水体系,例如红外线和软X射线光谱,不能容易地因为在水中强烈吸收的应用。在这里,我们用气动态力生成自由流动,亚微米,液层它们是2个数量级薄的比什么报道。光学,红外和X射线光谱来表征片材,其被发现在厚度可调从超过1微米至小于20个纳米,其对应于厚少于100个水分子。在该厚度,水性片材可以容易地在整个频谱发射的光子,导致红外线,X射线,电子光谱及以后可能变革的应用程序。超薄片材在真空天稳定,我们证明在自由电子激光器和同步辐射光源的使用。

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