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Self-Lifting NaCl Crystals

机译:自我提升NaCl晶体

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摘要

We show that macroscopic crystals of NaCl that form from evaporating drops of aqueous salt solutions can spontaneously lift themselves up and away from a hydrophobic surface. At the end of the evaporation process, tiny crystals of NaCl grow onto larger ones and form "legs" that push the large crystals away from the surface. The temperature dependence of the lifting speed is found to exhibit Arrhenius behavior with an activation energy similar to that of crystals growing in solution: the crystal growth itself determines the lifting speed that can be up to half a centimeter per minute. We show that surface hydrophobicity is a necessary but not a sufficient condition to obtain this "self-lifting" behavior.
机译:我们表明,从蒸发水溶液的蒸发液滴的NaCl的宏观晶体可以自发地向上抬起并远离疏水性表面。 在蒸发过程结束时,NaCl的微小晶体生长到较大的NaCl上并形成将大晶体远离表面的“腿”。 发现提升速度的温度依赖性表现出具有类似于溶液中生长的晶体的激活能量的Arrhenius行为:晶体生长本身确定最多可达每分钟半厘米的提升速度。 我们表明表面疏水性是一种必要而不是足够的条件来获得这种“自我提升”行为。

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