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具有定制润湿性的小型机器人。

Small-Scale Robotics with Tailored Wettability.

机构信息

College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518055, China.

Shenzhen Key Laboratory of Spine Surgery, Department of Spine Surgery, Peking University Shenzhen Hospital, Shenzhen, 518036, China.

出版信息

Adv Mater. 2023 May;35(18):e2205732. doi: 10.1002/adma.202205732. Epub 2023 Mar 3.

Abstract

Small-scale robots (SSRs) have emerged as promising and versatile tools in various biomedical, sensing, decontamination, and manipulation applications, as they are uniquely capable of performing tasks at small length scales. With the miniaturization of robots from the macroscale to millimeter-, micrometer-, and nanometer-scales, the viscous and surface forces, namely adhesive forces and surface tension have become dominant. These forces significantly impact motion efficiency. Surface engineering of robots with both hydrophilic and hydrophobic functionalization presents a brand-new pathway to overcome motion resistance and enhance the ability to target and regulate robots for various tasks. This review focuses on the current progress and future perspectives of SSRs with hydrophilic and hydrophobic modifications (including both tethered and untethered robots). The study emphasizes the distinct advantages of SSRs, such as improved maneuverability and reduced drag forces, and outlines their potential applications. With continued innovation, rational surface engineering is expected to endow SSRs with exceptional mobility and functionality, which can broaden their applications, enhance their penetration depth, reduce surface fouling, and inhibit bacterial adhesion.

摘要

小型机器人(SSRs)在各种生物医学、传感、去污和操作应用中已经成为有前途和多功能的工具,因为它们能够独特地在小尺寸范围内执行任务。随着机器人从宏观到毫米、微米和纳米级别的微型化,粘性和表面力,即粘附力和表面张力变得占主导地位。这些力对运动效率有重大影响。对具有亲水和疏水官能化的机器人进行表面工程,为克服运动阻力和提高针对各种任务目标和调节机器人的能力提供了一条全新途径。本综述重点介绍了具有亲水和疏水改性的 SSRs 的最新进展和未来展望(包括 tethered 和 untethered 机器人)。研究强调了 SSRs 的明显优势,例如提高了机动性和减少了阻力,并概述了它们的潜在应用。随着持续的创新,合理的表面工程有望赋予 SSRs 卓越的机动性和功能性,从而拓宽它们的应用范围、增强它们的穿透深度、减少表面污垢和抑制细菌附着。

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