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Biomimetic behavior of synthetic particles: from microscopic randomness to macroscopic control

机译:合成颗粒的仿生行为:从微观随机性到宏观调控

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摘要

Randomness is an inherent property of biological systems. In contrast, randomness has been mostly avoided in designing synthetic or artificial systems. Particularly, in designing micro/ nano-motors, some researchers have successfully used external fields to gain deterministic control over the directionality of the objects, which otherwise move in completely random directions due to Brownian motion. However, a partial control that preserves a certain degree of randomness can be very useful in certain applications of microano-motors. In this Perspective we review the current progress in establishing autonomous motion of microano-particles that possess controlled randomness, provide insight into the phenomena where macroscopic order originates from microscopic disorder and discuss the resemblance between these artificial systems and biological emergent/collective behaviors.
机译:随机性是生物系统的固有属性。相反,在设计合成或人工系统时,大多数情况下避免了随机性。特别是在设计微型/纳米电动机时,一些研究人员已成功地利用外部场对物体的方向性进行了确定性控制,否则它们会由于布朗运动而沿完全随机的方向运动。但是,在微/纳米马达的某些应用中,保留一定程度的随机性的部分控制可能非常有用。在本《观点》中,我们回顾了建立具有受控随机性的微米/纳米粒子自主运动的当前进展,提供了对宏观秩序起源于微观障碍的现象的深入了解,并讨论了这些人工系统与生物学应急/集体行为之间的相似性。

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