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Low internal pressure in femtoliter water capillary bridges reduces evaporation rates

机译:飞升水毛细管桥的内部压力低可降低蒸发速率

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摘要

Capillary bridges are usually formed by a small liquid volume in a confined space between two solid surfaces. They can have a lower internal pressure than the surrounding pressure for volumes of the order of femtoliters. Femtoliter capillary bridges with relatively rapid evaporation rates are difficult to explore experimentally. To understand in detail the evaporation of femtoliter capillary bridges, we present a feasible experimental method to directly visualize how water bridges evaporate between a microsphere and a flat substrate in still air using transmission X-ray microscopy. Precise measurements of evaporation rates for water bridges show that lower water pressure than surrounding pressure can significantly decrease evaporation through the suppression of vapor diffusion. This finding provides insight into the evaporation of ultrasmall capillary bridges.
机译:毛细管桥通常由两个固体表面之间的有限空间中的少量液体形成。对于飞升量级的体积,它们的内部压力可能低于周围压力。具有相对快速蒸发速率的Femtoliter毛细管桥很难通过实验进行探索。为了详细了解飞升毛细管桥的蒸发,我们提出了一种可行的实验方法,可以使用透射X射线显微镜直接观察静态空气中水桥如何在微球和平坦基质之间蒸发。对水桥蒸发速率的精确测量表明,比周围压力低的水压可通过抑制蒸汽扩散来显着降低蒸发量。该发现提供了对超小型毛细管桥蒸发的见解。

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