Institute of Industrial Science, University of Tokyo, 4-6-1 Komaba, Meguro-ku, Tokyo 153-8505, Japan.
Nat Commun. 2010 May 4;1(2):16. doi: 10.1038/ncomms1015.
Even a single-component liquid may have more than two liquid states. The transition between them is called a 'liquid-liquid transition' (LLT). Such LLTs have recently attracted considerable attention mainly because of the fundamental interest in the physical origin of this counter-intuitive phenomenon. In this study, we report the first observation of wetting effects on LLT for a molecular liquid, triphenyl phosphite. We find a transition from partial to complete wetting for nucleation-growth-type LLT when approaching the spinodal temperature of LLT. Some features unique to LLT are also revealed, reflecting for example the non-conserved nature of its order parameter. We also find that the wetting behaviour is not induced by dispersion forces, but by weak hydrogen bonding to a solid substrate, implying its important role in the LLT itself. Using wetting effects may open a new possibility to control kinetics and spatial patterns of nucleation-growth-type LLT.
即使是单一成分的液体也可能有超过两种液体状态。它们之间的转变称为“液-液相变”(LLT)。这种 LLT 最近引起了相当多的关注,主要是因为人们对这种违反直觉的现象的物理起源产生了浓厚的兴趣。在这项研究中,我们首次观察到了一种分子液体三苯基膦酸酯的 LLT 上的润湿效应。我们发现,当接近 LLT 的旋节线温度时,对于成核生长型 LLT,会发生从部分润湿到完全润湿的转变。还揭示了一些 LLT 特有的特征,例如其序参量的非守恒性质。我们还发现,润湿行为不是由色散力引起的,而是由与固体基底的弱氢键引起的,这意味着它在 LLT 本身中起着重要作用。利用润湿效应可能为控制成核生长型 LLT 的动力学和空间模式开辟新的可能性。