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纳流摇滚布朗马达。

Nanofluidic rocking Brownian motors.

机构信息

IBM Research-Zurich, 8803 Rüschlikon, Switzerland.

出版信息

Science. 2018 Mar 30;359(6383):1505-1508. doi: 10.1126/science.aal3271.

Abstract

Control and transport of nanoscale objects in fluids is challenging because of the unfavorable scaling of most interaction mechanisms to small length scales. We designed energy landscapes for nanoparticles by accurately shaping the geometry of a nanofluidic slit and exploiting the electrostatic interaction between like-charged particles and walls. Directed transport was performed by combining asymmetric potentials with an oscillating electric field to achieve a rocking Brownian motor. Using gold spheres 60 nanometers in diameter, we investigated the physics of the motor with high spatiotemporal resolution, enabling a parameter-free comparison with theory. We fabricated a sorting device that separates 60- and 100-nanometer particles in opposing directions within seconds. Modeling suggests that the device separates particles with a radial difference of 1 nanometer.

摘要

由于大多数相互作用机制对小尺度的不利缩放,因此在流体中控制和传输纳米级物体具有挑战性。我们通过精确地塑造纳米流体狭缝的几何形状并利用相同电荷的粒子与壁之间的静电相互作用,为纳米粒子设计了能量景观。通过将不对称势与振荡电场相结合,实现摇摆布朗马达,从而实现定向传输。使用直径为 60 纳米的金球,我们使用高时空分辨率研究了马达的物理特性,从而可以与理论进行无参数比较。我们制造了一种分选装置,可在几秒钟内将 60 纳米和 100 纳米的粒子按相反方向分离。模型表明,该装置可以分离出径向差为 1 纳米的粒子。

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