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Enhancing rectification of a nano-swimmer system by multi-layered asymmetric barriers

机译:加强nano-swimmer系统的整改通过多层非对称壁垒

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The rectification of nano-swimmers in two chambers separated by a strip of funnel gates is explored by dissipative particle dynamics simulations. According to the trajectories of active colloids across the funnel zone, two rectification mechanisms are identified: geometry-assisted diffusion and trap-hindered diffusion. In general, geometry-assisted diffusion dominates at a small active force (F-a) and run time (t) while trap-hindered diffusion governs at a large F-a and tau. The rectification ratio is affected by the funnel shape and various geometries are considered: open/closed triangular, circular and rectangular funnels. The rectification ratio of open funnels is always greater than that of closed funnels. Moreover, the open circular funnel has the best performance while the triangular one has the worst. Rectification can be enhanced as the number of funnel layers is increased. It is found that the rectification ratio of self-propelled colloids can be dramatically augmented by triple-layered funnels to be as high as 30. Our simulation study offers an efficient approach for rectification enhancement.
机译:nano-swimmers在两院的整改隔着一条漏斗盖茨探讨耗散粒子动力学模拟。根据活动胶体的轨迹在漏斗区,两个整改识别机制:geometry-assisted扩散和trap-hindered扩散。通常,geometry-assisted扩散占主导地位一小作用力(二)和运行时间(t)trap-hindered大层扩散控制和τ。漏斗的形状和各种几何图形认为:开放/封闭三角形、圆形和矩形漏斗。打开漏斗总是比封闭的漏斗。漏斗具有最佳性能而三角形的一个最坏的打算。加强漏斗层的数量增加了。自航胶体的比例显著增强triple-layered漏斗高达30。整改的有效的方法增强。

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