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On the thermodynamics and kinetics of superheated fluorocarbon phase-change agents

机译:过热碳氟化合物相变剂的热力学和动力学

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Superheated nanodrops are a new class of submicron-diameter liquid emulsion particles comprising perfluoropropane (C3F8), perfluorobutane (C4F10) and perfluoropentane (C8F12) that are being developed for ultrasound imaging and therapy. They can be formed by condensation of precursor lipid-coated, gas-filled microbubbles. Application of ultrasound or laser energy triggers the phase transformation back to a vapor bubble, and this process can be exploited for certain biomedical applications. The nanodrops are remarkably metastable in the liquid state under physiological conditions, even though they are highly superheated. In prior work, it was suggested that a high Laplace pressure in the lipid-coated nanodrop is responsible for its stability in the superheated state. Recent work by our group, however, points to the energy barrier for homogeneous nucleation as a more likely explanation. The purpose of this article is to review and discuss this mechanism in greater detail. We start with a brief description of basic fluorocarbon intermolecular forces. We then use the van der Waals equation of state to construct equilibrium phase diagrams and saturation curves. The effect of droplet Laplace pressure is superimposed onto these curves and compared to experimental data, where a poor correlation is observed. It is also shown that nanodrops with Laplace pressure are unstable to dissolution. The mechanism of homogeneous nucleation is then offered as an alternative explanation for the metastability of superheated nanodrops, with calculations that show good agreement with experimental data. (C) 2016 Elsevier B.V. All rights reserved.
机译:过热的纳米滴是一类新型的亚微米直径的液体乳液颗粒,包括全氟丙烷(C3F8),全氟丁烷(C4F10)和全氟戊烷(C8F12),它们正在开发用于超声成像和治疗。它们可以通过缩合前体脂质包裹的充气微泡形成。超声或激光能量的施加触发相变回到蒸气泡,并且该过程可以用于某些生物医学应用。即使在高温下,纳米滴在液态下仍显着亚稳态。在先前的工作中,建议脂质涂覆的纳米滴中的高拉普拉斯压力是其在过热状态下的稳定性的原因。但是,我们小组最近的工作指出了均匀成核的能垒是更可能的解释。本文的目的是更详细地审查和讨论此机制。我们从基本的碳氟化合物分子间力的简要描述开始。然后,我们使用范德华状态方程式构造平衡相图和饱和曲线。液滴拉普拉斯压力的影响叠加在这些曲线上,并与实验数据进行比较,在实验数据中,相关性很差。还显示具有拉普拉斯压力的纳米滴对于溶解是不稳定的。然后提供了均匀成核的机理,作为过热纳米滴亚稳性的替代解释,其计算结果与实验数据吻合良好。 (C)2016 Elsevier B.V.保留所有权利。

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