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High-speed imaging of ice nucleation in water proves the existence of active sites

机译:水中冰成核的高速成像证明了活性位点的存在

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Understanding how surfaces direct nucleation is a complex problem that limits our ability to predict and control crystal formation. We here address this challenge using high-speed imaging to identify and quantify the sites at which ice nucleates in water droplets on the two natural cleavage faces of macroscopic feldspar substrates. Our data show that ice nucleation only occurs at a few locations, all of which are associated with micron-size surface pits. Similar behavior is observed on α-quartz substrates that lack cleavage planes. These results demonstrate that substrate heterogeneities are the salient factor in promoting nucleation and therefore prove the existence of active sites. We also provide strong evidence that the activity of these sites derives from a combination of surface chemistry and nanoscale topography. Our results have implications for the nucleation of many materials and suggest new strategies for promoting or inhibiting nucleation across a wide range of applications.
机译:了解表面如何直接成核是一个复杂的问题,限制了我们预测和控制晶体形成的能力。我们在这里使用高速成像技术来解决这一挑战,以识别和量化宏观长石基质的两个自然分裂面上水滴中冰成核的位置。我们的数据表明,冰核仅在少数位置发生,所有这些都与微米级的表面凹坑有关。在缺少解理平面的α-石英衬底上观察到了类似的行为。这些结果表明,底物异质性是促进成核的重要因素,因此证明了活性位点的存在。我们还提供了强有力的证据,证明这些位点的活性源自表面化学和纳米级地形的结合。我们的结果对许多材料的成核有影响,并提出了在广泛应用中促进或抑制成核的新策略。

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