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首页> 外文期刊>Advanced Functional Materials >Multifunctional Visible-Light Powered Micromotors Based on Semiconducting Sulfur- and Nitrogen-Containing Donor-Acceptor Polymer
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Multifunctional Visible-Light Powered Micromotors Based on Semiconducting Sulfur- and Nitrogen-Containing Donor-Acceptor Polymer

机译:基于半导体硫 - 和含氮供体 - 受体聚合物的多功能可见光供电微计

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摘要

Photosensitive micromotors that can be remotely controlled by visible light irradiation demonstrate great potential in biomedical and environmental applications. To date, a vast number of light-driven micromotors are mainly composed from costly heavy and precious metal-containing multicomponent systems, that limit the modularity of chemical and physical properties of these materials. Herein, a highly efficient photocatalytic micromotors based exclusively on a purely organic polymer framework-semiconducting sulfur- and nitrogen-containing donor-acceptor polymer, is presented. Thanks to precisely tuned molecular architecture, this material has the ability to absorb visible light due to a conveniently situated energy gap. In addition, the donor-acceptor dyads within the polymer backbone ensure efficient photoexcited charge separation. Hence, these polymer-based micromotors can move in aqueous solutions under visible light illumination via a self-diffusiophoresis mechanism. Moreover, these micromachines can degrade toxic organic pollutants and respond to an increase in acidity of aqueous environments by instantaneous colour change. The combination of autonomous motility and intrinsic fluorescence enables these organic micromotors to be used as colorimetric and optical sensors for monitoring of the environmental aqueous acidity. The current findings open new pathways toward the design of organic polymer-based micromotors with tuneable band gap architecture for fabrication of self-propelled microsensors for environmental control and remediation applications.
机译:可通过可见光辐射远程控制的光敏微电机在生物医学和环境应用中表现出巨大的潜力。迄今为止,大量的光驱动的微电机主要由昂贵的重质和贵金属的多组分系统组成,限制了这些材料的化学和物理性质的模块化。这里,提出了一种专门基于纯有机聚合物框架 - 半导体硫和含氮供体 - 受体聚合物的高效光催化微量运动。由于精确调整的分子架构,这种材料具有由于方便的能隙而吸收可见光。此外,聚合物骨架内的供体受体二元确保有效的光孔电荷分离。因此,这些基于聚合物基微量运动会可以通过自扩散综合体机构在可见光照射下在水溶液中移动。此外,这些微鼠可以通过瞬时颜色变化降低有毒的有机污染物并响应水环境的酸度增加。自主运动和内在荧光的组合使这些有机微量运动器能够用作比色和光学传感器用于监测环境含水酸度。目前的调查结果开启了具有可调谐带隙架构的有机聚合物基微电子设计的新途径,用于制造用于环境控制和修复应用的自推进微传感器。

著录项

  • 来源
    《Advanced Functional Materials》 |2020年第38期|2002701.1-2002701.9|共9页
  • 作者单位

    Univ Chem & Technol Prague Fac Chem Technol Dept Inorgan Chem Tech 5 Prague 16628 Czech Republic;

    Univ Chem & Technol Prague Fac Chem Technol Dept Inorgan Chem Tech 5 Prague 16628 Czech Republic;

    Univ Chem & Technol Prague Fac Chem Technol Dept Inorgan Chem Tech 5 Prague 16628 Czech Republic;

    Univ Chem & Technol Prague Fac Chem Technol Dept Inorgan Chem Tech 5 Prague 16628 Czech Republic;

    Humboldt Univ Dept Chem Brook Taylor Str 2 D-12489 Berlin Germany;

    Univ Chem & Technol Prague Fac Chem Technol Dept Inorgan Chem Tech 5 Prague 16628 Czech Republic|China Med Univ China Med Univ Hosp Dept Med Res 91 Hsueh Shih Rd Taichung Taiwan|Yonsei Univ Dept Chem & Biomol Engn Yonsei Ro 50 Seoul 03722 South Korea|Brno Univ Technol Cent European Inst Technol Future Energy & Innovat Lab Purkynova 656-123 CZ-61600 Brno Czech Republic;

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

    micromotors; organic sensors; photocatalysis; semiconducting polymers; visible light;

    机译:微电机;有机传感器;光催化;半导体聚合物;可见光;

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