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自泳式Janus粒子在燃料斑块源附近的趋化行为。

Chemotactic behavior for a self-phoretic Janus particle near a patch source of fuel.

作者信息

Mancuso Viviana, Popescu Mihail N, Uspal William E

机构信息

Department of Mechanical Engineering, University of Hawai'i at Mānoa, 2540 Dole St., Holmes Hall 302, Honolulu, HI 96822, USA.

International Institute for Sustainability with Knotted Chiral Meta Matter (WPI-SKCM2), Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8526, Japan.

出版信息

Soft Matter. 2024 Nov 13;20(44):8742-8764. doi: 10.1039/d4sm00733f.

Abstract

Many biological microswimmers are capable of chemotaxis, , they can sense an ambient chemical gradient and adjust their mechanism of motility to move towards or away from the source of the gradient. Synthetic active colloids endowed with chemotactic behavior hold considerable promise for targeted drug delivery and the realization of programmable and reconfigurable materials. Here, we study the chemotactic behavior of a Janus particle, which converts "fuel" molecules, released at an axisymmetric chemical patch located on a planar wall, into "product" molecules at its catalytic cap and moves by self-phoresis induced by the product. The chemotactic behavior is characterized as a function of the interplay between the rates of release (at the patch) and the consumption (at the particle) of fuel, as well as of details of the phoretic response of the particle (, its phoretic mobility). Among other results, we find that, under certain conditions, the particle is attracted to a stable "hovering state" in which it aligns its axis normal to the wall and rests (positions itself) at an activity-dependent distance above the center of the patch.

摘要

许多生物微游动体都具有趋化性,也就是说,它们能够感知周围的化学梯度,并调整其运动机制,朝着或远离梯度源移动。具有趋化行为的合成活性胶体在靶向药物递送以及实现可编程和可重构材料方面具有巨大潜力。在此,我们研究了一种Janus粒子的趋化行为,该粒子将位于平面壁上的轴对称化学斑块处释放的“燃料”分子,在其催化帽处转化为“产物”分子,并通过产物诱导的自泳动来移动。趋化行为被表征为燃料释放速率(在斑块处)与消耗速率(在粒子处)之间相互作用的函数,以及粒子电泳响应的细节(即其电泳迁移率)的函数。在其他结果中,我们发现,在某些条件下,粒子会被吸引到一个稳定的“悬停状态”,在该状态下,它将其轴与壁垂直对齐,并在斑块中心上方与活性相关的距离处静止(定位自身)。

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