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Magnetically-Programmable Cylindrical Microparticles by Facile Reaping Method

机译:磁性可编程圆柱形微粒通过舒适的收割方法

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摘要

Various shapes of magnetically-programmed polyethylene glycol (PEG)-based particles with Fe~(3)O~(4)blocks were harvested by a facile reaping method. Specifically, elastic PEG-based particles can be obtained by applying uniform shear stress onto the array of densely-populated PEG/Fe~(3)O~(4)microstructures. A simple theory based on geometric and material properties was developed based on experimental observations to produce highly uniform cylindrical microparticles in a cost-effective manner. We analyzed the force balance of hairy architectures to explain the uniform cutting process, which is based on operating zones with various geometries and material elasticity. Here, the alignments of mono-/multi-dispersed iron oxide (Fe~(3)O~(4)) in microparticles can be tunable by changing the external magnetic field during replications. Furthermore, the collective reversible motions of different magneto-responsive PEG particles were observed when the external magnetic field was controlled, wherein such behaviors can be applied in potential medial applications such as controllable drug-delivery or microrobotics.
机译:通过容易收割方法收获具有Fe〜(3)O〜(4)嵌段的各种形状的磁性编程聚乙二醇(PEG)的颗粒。具体地,通过将​​均匀的剪切应力施加到密集填充的PEG / Fe〜(3)微结构阵列上,可以获得弹性PEG基颗粒。基于实验观察,开发了一种基于几何和材料特性的简单理论,以经济有效的方式生产高度均匀的圆柱形微粒。我们分析了毛状架构的力平衡来解释均匀的切割过程,该过程基于具有各种几何形状和材料弹性的操作区域。这里,可以通过在复制期间改变外部磁场来调谐微粒中的单次/多分散氧化铁(Fe〜(3)O〜(4))的对准。此外,当控制外部磁场时,观察到不同磁响应PEG颗粒的集体可逆动作,其中这种行为可以应用于诸如可控药物 - 输送或微生物的潜在内侧应用中。

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