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首页> 外文期刊>Angewandte Chemie >Multi-Light-Responsive Quantum Dot Sensitized Hybrid Micromotors with Dual-Mode Propulsion
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Multi-Light-Responsive Quantum Dot Sensitized Hybrid Micromotors with Dual-Mode Propulsion

机译:具有双模推进的多光响应量子点敏化混合微量电机

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摘要

CdS quantum dots/C-60 tubular micromotors with chemical/multi-light-controlled propulsion and "on-the-fly" acceleration capabilities are described. In situ growth of CdS quantum dots on the outer fullerene layer imparts this layer with light-responsive properties in connection to inner Pt, Pd or MnO2 layers. This is the first time that visible light is used to drive bubble-propelled tubular micromotors. The micromotors exhibit a broad absorption range from 320 to 670 nm and can be wirelessly controlled by modulating light intensity and peroxide concentration. The built-in accelerating optical system allows for the control of the velocity over the entire UV/Vis light spectra by modulating the catalyst surface chemistry. The light-responsive properties have been also exploited to accelerate the chemical dealloying and propulsion of micromotors containing a Cu/Pd layer. Such dual operated hybrid micromotors hold considerable promise for designing smart micromachines for on-demand operations, motion-based sensing, and enhanced cargo transportation.
机译:描述了CDSumporum点/ C-60管状微电子,具有化学/多光控推进和“在飞行”加速度能力。在外富勒烯层上的CDS量子点的原位生长赋予该层,具有与内部Pt,Pd或MnO2层的轻响应性。这是第一次可见光用于驱动气泡推进的管状微电子。微多体具有320至670nm的宽吸收范围,并且可以通过调节光强度和过氧化物浓度来无线控制。内置的加速光学系统通过调节催化剂表面化学来控制整个UV / VI光谱上的速度。已经利用光响应性能以加速含有Cu / Pd层的微量运动会的化学造成的化学造影和推进。这种双操作混合微电机对设计智能微磁测量,以供按需操作,基于运动的传感和增强的货物运输,保持相当大的承诺。

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