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Programmable Phototaxis of Metal-Phenolic Particle Microswimmers

机译:金属酚醛粒子微威尔人的可编程光辐射

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摘要

Light-driven directional motion is common in nature but remains a challenge for synthetic microparticles, particularly regarding collective motion on a macroscopic scale. Successfully engineering microparticles with light-driven collective motion could lead to breakthroughs in drug delivery, contaminant sensing, environmental remediation, and artificial life. Herein, metal-phenolic particle microswimmers capable of autonomously sensing and swimming toward an external light source are reported, with the speed regulated by the wavelength and intensity of illumination. These microswimmers can travel macroscopic distances (centimeters) and can remain illuminated for hours without degradation of motility. Experimental and theoretical analyses demonstrate that motion is generated through chemical transformations of the organic component of the metal-phenolic complex. Furthermore, cargos with specific spectral absorption profiles can be loaded into the particles and endow the particle microswimmers with activated motion corresponding to these spectral characteristics. The programmable nature of the light navigation, tunable size of the particles, and versatility of cargo loading demonstrate the versatility of these metal-phenolic particle microswimmers.
机译:光驱动的方向运动本质上是常见的,但仍然是合成微粒的挑战,特别是关于宏观尺度的集体运动。成功的工程微粒具有光源的集体运动可能导致药物递送,污染物感应,环境修复和人造生命中的突破。这里,报告了能够自主感测和朝向外部光源进行自主检测和游泳的金属 - 酚醛粒子微威尔,其速度由波长和照明强度调节。这些微大摩擦者可以行进宏观距离(厘米),并且可以在不降低运动的情况下保持为单位。实验和理论分析表明,通过金属酚综合体的有机成分的化学转化产生运动。此外,具有特定光谱吸收曲线的尸体可以装载到颗粒中并赋予粒子微威尔与对应于这些光谱特性的活化运动。颗粒的光导,可调谐尺寸的可编程性,以及货物负荷的多功能性证明了这些金属酚类粒子微威尔的多功能性。

著录项

  • 来源
    《Advanced Materials》 |2021年第13期|2006177.1-2006177.7|共7页
  • 作者单位

    Univ Melbourne ARC Ctr Excellence Convergent Bionano Sci & Techn Parkville Vic 3010 Australia|Univ Melbourne Dept Chem Engn Parkville Vic 3010 Australia;

    Univ Melbourne ARC Ctr Excellence Convergent Bionano Sci & Techn Parkville Vic 3010 Australia|Univ Melbourne Dept Chem Engn Parkville Vic 3010 Australia;

    RMIT Univ Sch Engn Micro Nanophys Res Lab Melbourne Vic 3000 Australia;

    Univ Melbourne ARC Ctr Excellence Convergent Bionano Sci & Techn Parkville Vic 3010 Australia|Univ Melbourne Dept Chem Engn Parkville Vic 3010 Australia|Leibniz Inst Polymer Res Dresden D-01069 Dresden Germany;

    RMIT Univ Coll Sci Engn & Hlth Sch Sci Melbourne Vic 3001 Australia;

    Chinese Univ Hong Kong Dept Biomed Engn Shatin Hong Kong Peoples R China;

    Univ Melbourne ARC Ctr Excellence Convergent Bionano Sci & Techn Parkville Vic 3010 Australia|Univ Melbourne Dept Chem Engn Parkville Vic 3010 Australia;

    RMIT Univ Sch Engn Micro Nanophys Res Lab Melbourne Vic 3000 Australia;

    Univ Melbourne ARC Ctr Excellence Convergent Bionano Sci & Techn Parkville Vic 3010 Australia|Univ Melbourne Dept Chem Engn Parkville Vic 3010 Australia|Univ Roma Tor Vergata Dept Chem Sci & Technol Via Ric Sci 1 I-00133 Rome Italy;

    Univ Melbourne ARC Ctr Excellence Convergent Bionano Sci & Techn Parkville Vic 3010 Australia|Univ Melbourne Dept Chem Engn Parkville Vic 3010 Australia;

    RMIT Univ Coll Sci Engn & Hlth Sch Sci Melbourne Vic 3001 Australia|Deakin Univ Inst Frontier Mat Geelong Vic 3216 Australia;

    Univ Melbourne ARC Ctr Excellence Convergent Bionano Sci & Techn Parkville Vic 3010 Australia|Univ Melbourne Dept Chem Engn Parkville Vic 3010 Australia;

    RMIT Univ Sch Engn Micro Nanophys Res Lab Melbourne Vic 3000 Australia;

    Univ Melbourne ARC Ctr Excellence Convergent Bionano Sci & Techn Parkville Vic 3010 Australia|Univ Melbourne Dept Chem Engn Parkville Vic 3010 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cargo loading; light#8208; driven microswimmers; micromotors; spectral response; tunable speed;

    机译:货物装载;光驱动的microSwimmer;微电机;光谱响应;可调速度;

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