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The reversibility and first-order nature of liquid–liquid transition in a molecular liquid

机译:分子液体中液体-液体转变的可逆性和一级性质

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摘要

Liquid–liquid transition is an intriguing phenomenon in which a liquid transforms into another liquid via the first-order transition. For molecular liquids, however, it always takes place in a supercooled liquid state metastable against crystallization, which has led to a number of serious debates concerning its origin: liquid–liquid transition versus unusual nano-crystal formation. Thus, there have so far been no single example free from such debates, to the best of our knowledge. Here we show experimental evidence that the transition is truly liquid–liquid transition and not nano-crystallization for a molecular liquid, triphenyl phosphite. We kinetically isolate the reverse liquid-liquid transition from glass transition and crystallization with a high heating rate of flash differential scanning calorimetry, and prove the reversibility and first-order nature of liquid–liquid transition. Our finding not only deepens our physical understanding of liquid–liquid transition but may also initiate a phase of its research from both fundamental and applications viewpoints.
机译:液-液转变是一种有趣的现象,其中液体通过一阶转变转变为另一种液体。但是,对于分子液体,它总是以过冷的液态发生亚稳态而不会结晶,这引起了关于其起源的许多严肃的争论:液-液转变与不寻常的纳米晶体形成。因此,据我们所知,到目前为止,没有任何一个例子可以摆脱这种辩论。在这里,我们显示出实验证据,表明过渡是真正的液-液过渡,而不是分子液体亚磷酸三苯酯的纳米结晶。我们以高闪速差示扫描量热法动力学地从玻璃化转变和结晶动力学中分离出了反向的液体-液体转变,并证明了液体-液体转变的可逆性和一级性质。我们的发现不仅加深了我们对液-液过渡的物理理解,而且可能从基础和应用的角度开始其研究的一个阶段。

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