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首页> 外文期刊>Physical review letters >Pressure Dependence of Fragile-to-Strong Transition and a Possible Second Critical Point in Supercooled Confined Water
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Pressure Dependence of Fragile-to-Strong Transition and a Possible Second Critical Point in Supercooled Confined Water

机译:过冷承压水中脆性-强转变的压力依赖性和可能的​​第二临界点

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摘要

By confining water in nanopores of silica glass, we can bypass the crystallization and study the pressure effect on the dynamical behavior in deeply supercooled state using neutron scattering. We observe a clear evidence of a cusplike fragile-to-strong (FS) dynamic transition. Here we show that the transition temperature decreases steadily with an increasing pressure, until it intersects the homogenous nucleation temperature line of bulk water at a pressure of 1600 bar. Above this pressure, it is no longer possible to discern the characteristic feature of the FS transition. Identification of this end point with the possible second critical point is discussed.
机译:通过将水限制在石英玻璃的纳米孔中,我们可以绕过结晶过程,并利用中子散射研究深度​​过冷状态下动力行为的压力效应。我们观察到一个清晰的证据,表明尖峰状的脆性到强(FS)动态过渡。在这里,我们显示出转变温度随着压力的增加而稳步下降,直到在1600 bar的压力下与大体积水的均匀成核温度线相交为止。超过此压力,就不再可能识别FS过渡的特征。讨论了此终点与可能的第二临界点的识别。

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