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不对称胶体马达:从不对称纳米结构制造到高效推进策略。

Asymmetric colloidal motors: from dissymmetric nanoarchitectural fabrication to efficient propulsion strategy.

作者信息

Li Haichao, Li Yue, Liu Jun, He Qiang, Wu Yingjie

机构信息

Key Laboratory of Microsystems and Microstructures Manufacturing (Ministry of Education), School of Medicine and Health, Harbin Institute of Technology, No. 92 XiDaZhi Street, Harbin, 150001, China.

出版信息

Nanoscale. 2022 May 26;14(20):7444-7459. doi: 10.1039/d2nr00610c.

Abstract

Janus colloidal motors (JCMs) are versatile anisotropic particles that can effectively move autonomously based on their asymmetric structures, providing unlimited possibilities for various tasks. Developing novel JCMs with controllable size, engineered nanostructure and functionalized surface properties has always been a challenge for chemists. This review summarizes the recent progress in synthesized JCMs in terms of their fabrication method, propulsion strategy, and biomedical applications. The design options, construction methods, and typical examples of JCMs are presented. Common propulsion mechanisms of JCMs are reviewed, as well as the approaches to control their motion under complex microscopic conditions based on symmetry-breaking strategies. The precisely controlled motion enables JCMs to be used in biomedicine, environmental remediation, analytical sensing and nanoengineering. Finally, perspectives on future research and development are presented. Through ingenious design and multi-functionality, new JCM-based technologies could address more and more special needs in complex environments.

摘要

双面胶体马达(JCMs)是多功能的各向异性粒子,能够基于其不对称结构有效地自主移动,为各种任务提供了无限可能。开发具有可控尺寸、工程化纳米结构和功能化表面性质的新型JCMs一直是化学家面临的挑战。本综述总结了合成JCMs在制备方法、推进策略和生物医学应用方面的最新进展。介绍了JCMs的设计选项、构建方法和典型实例。综述了JCMs常见的推进机制,以及基于对称破缺策略在复杂微观条件下控制其运动的方法。精确控制的运动使JCMs能够应用于生物医学、环境修复、分析传感和纳米工程。最后,对未来的研发方向进行了展望。通过巧妙的设计和多功能性,基于新型JCMs的技术可以满足复杂环境中越来越多的特殊需求。

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