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NANODROPLETS AND THE EQUATION OF STATE OF DEEPLY SUPERCOOLED WATER

机译:纳米油和深超冷水状态方程

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We carry out extensive molecular dynamics simulations of nanoscale liquid droplets of the TIP4P/2005 model of water, with number of molecules ranging from N = 64 to 2880 and temperatures down to 180 K. As droplet size decreases, the Laplace pressure induced by the liquid-vapour surface tension increases. For sufficiently small droplets, the density within droplets exceeds the critical density associated with the liquid-liquid critical point proposed to occur deep in the supercooled region of the model. Since crystallization is suppressed for such small droplets, they provide a possible experimental probe for determining the equation of state for water where crystallization is otherwise unavoidable, and hence could provide direct evidence for the much-investigated second critical point scenario. However, it is unclear whether such small systems can provide any information on bulk water. We report on our progress in determining the relationships between N, temperature, pressure, and density, including the emergence of anomalous behaviour emblematic of bulk liquid water.
机译:我们对水的TIP4P / 2005模型的纳米级液滴进行了广泛的分子动力学模拟,分子数量范围从N = 64到2880,温度低至180K。随着液滴尺寸的减小,液体引起的拉普拉斯压力-蒸气表面张力增加。对于足够小的液滴,液滴内的密度超过与提议在模型的过冷区域深处发生的液-液临界点相关的临界密度。由于这种小液滴的结晶受到抑制,因此它们为确定水的状态方程提供了一种可能的实验探针,否则结晶是不可避免的,因此可以为经过大量研究的第二临界点场景提供直接证据。但是,尚不清楚这种小型系统能否提供有关散装水的任何信息。我们报告了我们在确定氮,温度,压力和密度之间的关系方面的进展,其中包括大量液态水所代表的异常行为的出现。

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