论文标题

列米环境启用的活性液滴的定向自我振动

Directional self-locomotion of active droplets enabled by nematic environment

论文作者

Rajabi, Mojtaba, Baza, Hend, Turiv, Taras, Lavrentovich, Oleg D.

论文摘要

由自行性相互作用单元组成的活性物质是从其看似混乱的不平衡动力学中提取有用工作的主要希望。简化主动物质以产生工作在微观上尤为重要,粘性力超过惯性,而有用的运输方式需要非常特定的非对逆局类型的运动。在这里,我们报告说,当放置在不活跃的nematic介质中时,枯草芽孢杆菌的水分散体的微观活性液滴显示出单向推进。液滴内部细菌的随机运动被极性导演结构纠正到液滴的定向自我振动中,液滴本身通过其表面上的各向异性分子相互作用在周围的列中产生。没有游泳细菌的液滴显示没有净位移。活性液滴的轨迹可以通过对列中培养基的分子取向进行构图,将其作为直线或曲线的轨迹。效果表明,可以以介质断裂的空间对称性为代价来实现微观的游泳。它可用于开发微电。

Active matter comprised of self-propelled interacting units holds a major promise for extraction of useful work from its seemingly chaotic out-of-equilibrium dynamics. Streamlining active matter to produce work is especially important at microscale, where the viscous forces prevail over inertia and the useful modes of transport require very specific non-reciprocal type of motion. Here we report that microscopic active droplets representing aqueous dispersions of swimming bacteria Bacillus subtilis show unidirectional propulsion when placed in an inactive nematic medium. Random motion of bacteria inside the droplet is rectified into a directional self-locomotion of the droplet by the polar director structure that the droplet itself creates in the surrounding nematic through anisotropic molecular interactions at its surface. Droplets without swimming bacteria show no net displacement. The trajectory of the active droplet can be predesigned as rectilinear or curvilinear by patterning the molecular orientation of the nematic medium. The effect demonstrates that swimming at microscale can be achieved at the expense of broken spatial symmetry of the medium; it can be used in development of micromachines.

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