论文标题

复合颗粒的介电性平衡

Dielectrophoretic Equilibrium of Complex Particles

论文作者

Elkeles, Tom, Garcia-Sanchez, Pablo, Yue, Wu, Ramos, Antonio, Yossifon, Gilad

论文摘要

与常用的球形janus颗粒相反,在这里,我们使用了使用光刻技术制造的工程Janus颗粒来精确控制其几何形状和涂层区域。具体来说,我们研究了棒棒糖形的复杂粒子,其头部涂有金色,而尾巴则裸露。由于其独特的电性能(即电极化性),粒子表现出力平衡,在其头部和尾巴上,相对的介电手持力相反,其头部和尾部恰好相互取消,以产生稳定的平衡位置。这是在四极电极阵列中实现的,其中工程粒子的平衡位置可以通过频率调节。这与标准的介电性行为相反,其中粒子分别从阴性介电术反应转移到阳性的介电响应时,粒子的位置从四方的中心转移到了电极的最边缘。这为对这种复杂粒子的控制提供了新的机会,以进行自组装,生物传感,仿生精子等。

In contrast to the commonly used spherical Janus particles, here we used engineered Janus particles that are fabricated using photolithography technique for precise control over their geometry and coated regions. Specifically, we studied a lollipop-shaped complex particle where its head is coated with gold while its tail is left bare. Due to their distinct electrical properties (i.e. electrical polarizability) the particle exhibits force equilibrium where opposite dielectrophoretic forces acting on its head and tail exactly cancel each other to yield a stable equilibrium position. This was realized in a quadrupolar electrode array where the equilibrium position of the engineered particle could be tuned by the frequency. This stands in contrast to the standard dielectrophoretic behavior where the particle shifts positions from either the center of the quad to the very edge of the electrodes when shifting from a negative to positive dielectrophoretic response, respectively. This opens new opportunities for positioning control of such complex particles for self-assembly, biosensing, biomimetic spermatozoa and more.

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