论文标题

纳米孔中的单泡动力学:均质和异质成核之间的过渡

Single-Bubble Dynamics in Nanopores: Transition Between Homogeneous and Heterogeneous Nucleation

论文作者

Paul, Soumyadeep, Hsu, Wei-Lun, Magnini, Mirco, Mason, Lachlan R, Ho, Ya-Lun, Matar, Omar K, Daiguji, Hirofumi

论文摘要

当在稀薄的纳米孔中应用电压偏置时,局部焦耳加热会导致单个气泡成核,提供一个独特的平台来研究纳米级气泡行为,这仍然知之甚少。因此,我们研究了充满电解质溶液的固态纳米孔内的气泡成核和崩溃,发现同型/异质气泡成核与孔径之间存在明显的相关性。随着孔直径从280 nm增加到525 nm,成核状态从主要周期性均匀成核转变为均质和异质成核的非周期性混合物。同质和异质成核方案之间的过渡障碍是通过考虑聚类形成的相对自由能成本来定义的。构建了考虑过渡屏障和接触线钉在弯曲表面上的热力学模型,这决定了异质成核的可能性。结果表明,通过我们的热力学分析,实验性气泡产生行为是密切捕获的,为控制纳米孔中气泡的周期性均质成核提供了重要信息。

When applying a voltage bias across a thin nanopore, localized Joule heating can lead to single bubble nucleation, offering a unique platform for studying nanoscale bubble behavior, which is still poorly understood. Accordingly, we investigate bubble nucleation and collapse inside solid-state nanopores filled with electrolyte solutions and find that there exists a clear correlation between homo/heterogeneous bubble nucleation and the pore diameter. As the pore diameter is increased from 280 nm to 525 nm, the nucleation regime transitions from predominantly periodic homogeneous nucleation to a non-periodic mixture of homogeneous and heterogeneous nucleation. A transition barrier between the homogeneous and heterogeneous nucleation regimes is defined by considering the relative free-energy costs of cluster formation. A thermodynamic model considering the transition barrier and contact-line pinning on curved surfaces is constructed, which determines the possibility of heterogeneous nucleation. It is shown that the experimental bubble generation behavior is closely captured by our thermodynamic analysis, providing important information for controlling the periodic homogeneous nucleation of bubbles in nanopores.

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