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首页> 外文期刊>Science Advances >Emergent collective colloidal currents generated via exchange dynamics in a broken dimer state
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Emergent collective colloidal currents generated via exchange dynamics in a broken dimer state

机译:通过交换动态在破碎的二聚体状态产生的紧急集体胶体电流

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Controlling the flow of matter down to micrometer-scale confinement is of central importance in material and environmental sciences, with direct applications in nano and microfluidics, drug delivery, and biotechnology. Currents of microparticles are usually generated with external field gradients of different nature (e.g., electric, magnetic, optical, thermal, or chemical ones), which are difficult to control over spatially extended regions and samples. Here, we demonstrate a general strategy to assemble and transport polarizable microparticles in fluid media through combination of confinement and magnetic dipolar interactions. We use a homogeneous magnetic modulation to assemble dispersed particles into rotating dimeric state and frustrated binary lattices, and generate collective currents that arise from a novel, field-synchronized particle exchange process. These dynamic states are similar to cyclotron and skipping orbits in electronic and molecular systems, thus paving the way toward understanding and engineering similar processes at different length scales across condensed matter.
机译:控制下降到千分尺寸限制的物质流动对材料和环境科学的核心重要性具有核心重要性,具有纳米和微流体,药物递送和生物技术的直接应用。微粒的电流通常用不同性质的外部场梯度(例如,电磁,光学,热或化学物质或化学物质)产生,这难以控制空间延伸的区域和样品。这里,我们证明了通过限制和磁性偶极相互作用的组合组装和运输流体介质中的可极化微粒的一般策略。我们使用均匀的磁调制将分散的颗粒组装成旋转的二聚体状态和令人沮丧的二进制格子,并产生从新颖的现场同步粒子交换过程中产生的集体电流。这些动态状态类似于电子和分子系统中的回旋加速器和跳过轨道,从而铺平了在凝结物上的不同长度尺度的理解和工程类似过程的方式。

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