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Asymmetry controlled dynamic behavior of autonomous chemiluminescent Janus microswimmers

机译:自主化学发光Janus microWimmers的不对称控制动态行为

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Asymmetrically modified Janus microparticles are presented as autonomous light emitting swimmers. The localized dissolution of hybrid magnesium/polymer objects allows combining chemiluminescence with the spontaneous production of H _(2) bubbles, and thus generating directed motion. These light-emitting microswimmers are synthesized by using a straightforward methodology based on bipolar electromilling, followed by indirect bipolar electrodeposition of an electrophoretic paint. An optimization of the experimental parameters enables in the first step the formation of well-defined isotropic or anisotropic Mg microparticles. Subsequently, they are asymmetrically modified by wireless deposition of an anodic paint. The degree of asymmetry of the resulting Janus particles can be fine-tuned, leading to a controlled directional motion due to anisotropic gas formation. This autonomous motion is coupled with the emission of bright orange light when Ru(bpy) _(3) ~(2+) and S _(2) O _(8) ~(2?) are present in the solution as chemiluminescent reagents. The light emission is based on an original process of interfacial redox-induced chemiluminescence, thus allowing an easy visualization of the swimmer trajectories.
机译:不对称修改的Janus微粒作为自主发光游泳运动员呈现。杂化镁/聚合物对象的局部溶解允许将化学发光与H _(2)气泡的自发产生相结合,从而产生定向运动。通过使用基于双极电扫描的直接方法合成这些发光微威尔,其次是电泳涂料的间接双极电沉积。实验参数的优化使得在第一步中能够形成明确定义的各向同性或各向异性Mg微粒。随后,通过阳极涂料的无线沉积是不对称的修改。由此产生的Janus颗粒的不对称程度可以微调,导致由于各向异性气体形成引起的控制定向运动。当溶液中存在在溶液中存在时(BPY)_(3)〜(2)〜(2)〜(2≤)作为化学发光试剂时,这种自主运动与亮橙光的发射联接。 。发光基于界面氧化还原诱导的化学发光的原始过程,从而允许容易地可视化游泳运动轨迹。

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