论文标题

由活性Janus颗粒诱导的反固化

Inverse Solidification Induced by Active Janus Particles

论文作者

Huang, Tao, Misko, Vyacheslav R., Gobeil, Sophie, Wang, Xu, Nori, Franco, Schütt, Julian, Fassbender, Jürgen, Cuniberti, Gianaurelio, Makarov, Denys, Baraban, Larysa

论文摘要

当晶格中的热激发或缺陷浓度足够高时,晶体融化。熔化后,结晶的长距离顺序会消失,将固体变成液体。与这种固体熔化的经典情况相反,在这里,我们证明了在最初无序的基质中出现晶体长距离顺序的违反直觉行为。在适应化学活性缺陷的被动胶体颗粒系统中证明了这种异常的固化 - 光催化的Janus颗粒。当现场缺失诱导的波动的量(这是有效温度的量度)达到临界值时,观察到的结晶发生。这种异常行为背后的驾驶机制纯粹是内部的,类似于爆炸引起的凝固。在这里,“内部微爆炸”的作用是由位于胶体基质中的缺陷的光化学活性发挥的。缺陷引起的固化发生在非平衡条件下:所得的固体存在,只要以离子流的形式恒定的能量供应由活性Janus颗粒缺陷表面的催化光化学反应提供。我们的发现可能有助于理解在极端条件下物质的相变,远离热力学平衡。

Crystals melt when thermal excitations or the concentration of defects in the lattice is sufficiently high. Upon melting, the crystalline long-range order vanishes, turning the solid to a fluid. In contrast to this classical scenario of solid melting, here we demonstrate a counter-intuitive behavior of the occurrence of crystalline long-range order in an initially disordered matrix. This unusual solidification is demonstrated in a system of passive colloidal particles accommodating chemically active defects -- photocatalytic Janus particles. The observed crystallization occurs when the amount of active-defect-induced fluctuations (which is the measure of the effective temperature) reaches critical value. The driving mechanism behind this unusual behavior is purely internal and resembles a blast-induced solidification. Here the role of "internal micro-blasts" is played by the photochemical activity of defects residing in the colloidal matrix. The defect-induced solidification occurs under non-equilibrium conditions: the resulting solid exists as long as a constant supply of energy in the form of ion flow is provided by the catalytic photochemical reaction at the surface of active Janus particle defects. Our findings could be useful for understanding of the phase transitions of matter under extreme conditions far from thermodynamic equilibrium.

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