论文标题

铁电液滴在铁电固体表面上的爆炸性静电不稳

Explosive electrostatic instability of ferroelectric liquid droplets on ferroelectric solid surfaces

论文作者

Barboza, Raouf, Marni, Stefano, Ciciulla, Fabrizio, Mir, Farooq Ali, Nava, Giovanni, Caimi, Federico, Zaltron, Annamaria, Clark, Noel A., Bellini, Tommaso, Lucchetti, Liana

论文摘要

我们研究了暴露于尼贝特铁电晶体底物的高电场的铁电液滴的静电行为。铁电液体是一种列液晶体,其中几乎完整的分子偶极子的极性排序会在平均分子长轴上产生内部宏观极化。通过从列阶段降低温度进入铁电相后,液晶液滴在机电上变得不稳定,并通过流体喷射的爆炸性发射而崩解。这些喷气机主要是界面的,在底物表面上散布,并表现出分形分支到较小的溪流中以最终破坏,形成二次液滴。我们将这种行为理解为电动流体液滴的瑞利不稳定性的表现,当静电排斥超过流体的表面张力时,预计。在这种情况下,电荷是由于铁电流体的批量极化,该液体通过其条纹场和固体液体界面耦合,将基础硅盐基质底物的层层化耦合。由于流体的喷射不会中和液滴表面,因此随着温度降低,它们可以发生多个爆炸性事件。

We investigated the electrostatic behavior of ferroelectric liquid droplets exposed to the pyroelectric field of a lithium niobate ferroelectric crystal substrate. The ferroelectric liquid is a nematic liquid crystal in which almost complete polar ordering of the molecular dipoles generates an internal macroscopic polarization locally collinear to the mean molecular long axis. Upon entering the ferroelectric phase by reducing the temperature from the nematic phase, the liquid crystal droplets become electromechanically unstable and disintegrate by the explosive emission of fluid jets. These jets are mostly interfacial, spreading out on the substrate surface, and exhibit fractal branching out into smaller streams to eventually disrupt, forming secondary droplets. We understand this behavior as a manifestation of the Rayleigh instability of electrically charged fluid droplets, expected when the electrostatic repulsion exceeds the surface tension of the fluid. In this case the charges are due to the bulk polarization of the ferroelectric fluid which couples to the pyroelectric polarization of the underlying lithium niobate substrate through its fringing field and solid-fluid interface coupling. Since the ejection of fluid does not neutralize the droplet surfaces, they can undergo multiple explosive events as the temperature decreases.

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