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Autonomous movement of controllable assembled Janus capsule motors

机译:可控组装的Janus胶囊电动机的自主运动

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摘要

We demonstrate the first example of a self-propelled Janus polyelectrolyte multilayer hollow capsule that can serve as both autonomous motor and smart cargo. This new autonomous Janus capsule motor composed of partially coated dendritic platinum nanoparticles (Pt NPs) was fabricated by using a template-assisted layer-by-layer (LbL) self-assembly combined with a microcontact printing method. The resulting Janus capsule motors still retain outstanding delivery capacities and can respond to external stimuli for controllable encapsulation and triggered release of model drugs. The Pt NPs on the one side of the Janus capsule motors catalytically decompose hydrogen peroxide fuel, generating oxygen bubbles which then recoil the movement of the capsule motors in solution or at an interface. They could autonomously move at a maximum speed of above 1 mm/s (over 125 body lengths/s), while exerting large forces exceeding 75 pN. Also, these asymmetric hollow capsules can be controlled by an external magnetic field to achieve directed movement. This LbL-assembled Janus capsule motor system has potential in making smart self-propelling delivery systems.
机译:我们演示了自推式Janus聚电解质多层空心胶囊的第一个示例,该胶囊既可以用作自动驾驶汽车,也可以用作智能货物。通过使用模板辅助的逐层(LbL)自组装结合微接触印刷方法,制造了这种由部分涂覆的树枝状铂纳米颗粒(Pt NPs)组成的新型自主Janus胶囊电动机。最终的Janus胶囊电机仍然具有出色的输送能力,并且可以响应外部刺激,以实现可控封装和触发模型药物的释放。 Janus胶囊电动机的一侧上的Pt NPs催化分解过氧化氢燃料,产生氧气气泡,然后使该胶囊反冲溶液或界面处的胶囊电动机运动。它们可以以大于1 mm / s(超过125体长/ s)的最大速度自主移动,同时施加超过75 pN的巨大力。而且,这些不对称的中空胶囊可以通过外部磁场控制以实现定向运动。这种由LbL组装的Janus胶囊电动机系统具有制造智能自推式输送系统的潜力。

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