Katayama Y, Mizutani T, Utsumi W, Shimomura O, Yamakata M, Funakoshi K
Department of Synchrotron Radiation Research, Japan Atomic Energy Research Institute, Sayo, Hyogo.
Nature. 2000 Jan 13;403(6766):170-3. doi: 10.1038/35003143.
First-order structural phase transitions are common in crystalline solids, whereas first-order liquid-liquid phase transitions (that is, transitions between two distinct liquid forms with different density and entropy) are exceedingly rare in pure substances. But recent theoretical and experimental studies have shown evidence for such a transition in several materials, including supercooled water and liquid carbon. Here we report an in situ X-ray diffraction observation of a liquid-liquid transition in phosphorus, involving an abrupt, pressure-induced structural change between two distinct liquid forms. In addition to a known form of liquid phosphorus--a molecular liquid comprising tetrahedral P4 molecules--we have found a polymeric form at pressures above 1 GPa. Changing the pressure results in a reversible transformation from the low-pressure molecular form into the high-pressure polymeric form. The transformation is sharp and rapid, occurring within a few minutes over a pressure range of less than 0.02 GPa. During the transformation, the two forms of liquid coexist. These features are strongly suggestive of a first-order liquid-liquid phase transition.
一级结构相变在晶体固体中很常见,而一级液-液相变(即两种具有不同密度和熵的不同液态之间的转变)在纯物质中极为罕见。但最近的理论和实验研究表明,在包括过冷水和液态碳在内的几种材料中存在这种转变的证据。在此,我们报告了对磷中液-液相变的原位X射线衍射观察结果,该相变涉及在两种不同液态之间由压力诱导的突然结构变化。除了一种已知的液态磷形式——由四面体P4分子组成的分子液体——我们还在高于1 GPa的压力下发现了一种聚合形式。改变压力会导致从低压分子形式到高压聚合形式的可逆转变。这种转变迅速且明显,在不到0.02 GPa的压力范围内几分钟内就会发生。在转变过程中,两种液态形式共存。这些特征强烈表明这是一级液-液相变。