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Local Acoustic Fields Powered Assembly of Microparticles and Applications

机译:局部声场驱动的微粒组装及其应用

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摘要

Controllable assembly in nano-/microscale holds considerable promise for bioengineering, intracellular manipulation, diagnostic sensing, and biomedical applications. However, up to now, micro-anoscopic assembly methods are severely limited by the fabrication materials, as well as energy sources to achieve the effective propulsion. In particular, reproductive manipulation and customized structure is quite essential for assemblies to accomplish a variety of on-demand tasks at small scales. Here, we present an attractive assembly strategy to collect microparticles, based on local acoustic forces nearby microstructures. The micro-manipulation chip is built based on an enhanced acoustic field, which could tightly trap microparticles to the boundaries of the microstructure by tuning the applied driving frequency and voltage. Numerical simulations and experimental demonstrations illustrate that the capturing and assembly of microparticles is closely related to the size of particles, owing to the vibration-induced locally enhanced acoustic field and resultant propulsion force. This acoustic assembly strategy can open extensive opportunities for lab-on-chip systems, microfactories, and micro-manipulators, among others.
机译:纳米/微米级的可控组装在生物工程,细胞内操作,诊断感测和生物医学应用方面具有可观的前景。然而,迄今为止,微/纳镜组装方法受到制造材料以及实现有效推进的能源的严重限制。特别是,生殖操作和定制结构对于装配体以小规模完成各种按需任务非常重要。在这里,我们提出了一种有吸引力的组装策略,可以根据附近的微结构的局部声力来收集微粒。该微操纵芯片是基于增强的声场构建的,该声场可以通过调节施加的驱动频率和电压将微粒紧密地捕获到微结构的边界。数值模拟和实验证明表明,由于振动引起的局部增强声场和所产生的推进力,微粒的捕获和组装与微粒的尺寸密切相关。这种声学组装策略可以为片上实验室系统,微型工厂和微型操纵器等带来广泛的机会。

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