Topological nature of the liquid–liquid phase transition in tetrahedral liquids

被引:0
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作者
Andreas Neophytou
Dwaipayan Chakrabarti
Francesco Sciortino
机构
[1] University of Birmingham,School of Chemistry
[2] Sapienza Università di Roma,Dipartimento di Fisica
来源
Nature Physics | 2022年 / 18卷
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摘要
The first-order phase transition between two tetrahedral networks of different density—introduced as a hypothesis to account for the anomalous behaviour of certain thermodynamic properties of deeply supercooled water—has received strong support from a growing body of work in recent years. Here we show that this liquid–liquid phase transition in tetrahedral networks can be described as a transition between an unentangled, low-density liquid and an entangled, high-density liquid, the latter containing an ensemble of topologically complex motifs. We first reveal this distinction in a rationally designed colloidal analogue of water. We show that this colloidal water model displays the well-known water thermodynamic anomalies as well as a liquid–liquid critical point. We then investigate water, employing two widely used molecular models, to demonstrate that there is also a clear topological distinction between its two supercooled liquid networks, thereby establishing the generality of this observation, which might have far-reaching implications for understanding liquid–liquid phase transitions in tetrahedral liquids.
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页码:1248 / 1253
页数:5
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