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Microgel that swims to the beat of light

机译:微池游戏到光的节拍

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摘要

Complementary to the quickly advancing understanding of the swimming of microorganisms, we demonstrate rather simple design principles for systems that can mimic swimming by body shape deformation. For this purpose, we developed a microswimmer that could be actuated and controlled by fast temperature changes through pulsed infrared light irradiation. The construction of the microswimmer has the following features: (i) it is a bilayer ribbon with a length of 80 or 120 mu m, consisting of a thermo-responsive hydrogel of poly-N-isopropylamide coated with a 2-nm layer of gold and equipped with homogeneously dispersed gold nanorods; (ii) the width of the ribbon is linearly tapered with a wider end of 5 mu m and a tip of 0.5 mu m; (iii) a thickness of only 1 and 2 mu m that ensures a maximum variation of the cross section of the ribbon along its length from square to rectangular. These wedge-shaped ribbons form conical helices when the hydrogel is swollen in cold water and extend to a filament-like object when the temperature is raised above the volume phase transition of the hydrogel at 32 degrees C. The two ends of these ribbons undergo different but coupled modes of motion upon fast temperature cycling through plasmonic heating of the gel-objects from inside. Proper choice of the IR-light pulse sequence caused the ribbons to move at a rate of 6 body length/s (500 mu m/s) with the wider end ahead. Within the confinement of rectangular container of 30 mu m height and 300 mu m width, the different modes can be actuated in a way that the movement is directed by the energy input between spinning on the spot and fast forward locomotion.
机译:作为对微生物游动的快速理解的补充,我们展示了通过体形变形模拟游动的系统的简单设计原则。为此,我们开发了一种可以通过脉冲红外光照射快速温度变化来驱动和控制的微型wimmer。该微wimmer的结构具有以下特征:(i)它是一条长度为80或120μm的双层带状物,由聚N-异丙基酰胺的热响应水凝胶组成,该水凝胶涂有2纳米金层,并配备均匀分散的金纳米棒;(ii)色带的宽度呈线性锥形,宽端为5μm,尖端为0.5μm;(iii)厚度仅为1和2μm,确保织带横截面沿其长度从方形到矩形的最大变化。当水凝胶在冷水中膨胀时,这些楔形条带形成锥形螺旋,当温度升高到水凝胶在32°C时的体积相变以上时,这些条带延伸到一个长丝状物体。这些条带的两端在通过从内部对凝胶物体进行等离子体加热的快速温度循环中经历不同但耦合的运动模式。正确选择红外光脉冲序列会使色带以6体长/秒(500μm/s)的速度移动,更宽的一端在前面。在高度为30μm、宽度为300μm的矩形容器内,不同的模式可以通过现场旋转和快进运动之间的能量输入来驱动。

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    RWTH Univ DWI Leibniz Inst Interact Mat Forckenbeckstr 50 D-52056 Aachen Germany;

    RWTH Univ DWI Leibniz Inst Interact Mat Forckenbeckstr 50 D-52056 Aachen Germany;

    RWTH Univ DWI Leibniz Inst Interact Mat Forckenbeckstr 50 D-52056 Aachen Germany;

    RWTH Univ DWI Leibniz Inst Interact Mat Forckenbeckstr 50 D-52056 Aachen Germany;

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  • 正文语种 eng
  • 中图分类 物理学;
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