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A Novel Electrolysis-Bubble-Actuated Micropump via Roughness Gradient Design of the Hydrophobic Lateral Breather

机译:一种新型电解 - 气泡驱动微泵,通过疏水性横向呼吸的粗糙度梯度设计

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A novel electrolysis-bubble-actuated micropump based on the roughness gradient design on the hydrophobic surface of the lateral breather is reported in this paper. The micropump is implemented by taking advantage of the electrolysis actuation, the surface tension effect and the periodic electrolysis-bubble generation. This proposed micropump design not only achieves a net pumping flow but also resolves the advantages existing in the early proposed electrochemical micropumps, such as the complicated time-sequence power control, the need of large/long nozzle-diffuser structure and the limitation of the sealed reservoir. This micropump driven by a simple circuit control without mechanical moving parts is suitable for the development of low power-consumption and compact micropumps. Experimental results demonstrate the pumping function of our micropump to continuously push liquid forward based on our roughness gradient design and the periodic electrolytic-bubble generation in the microchannel.
机译:本文报道了一种基于横向呼吸疏水表面上的粗糙度梯度设计的新型电解 - 气泡致动微泵。通过利用电解致动,表面张力效应和周期性电解气泡产生来实现微泵。这一提出的微泵设计不仅实现了净泵送流量,而且解决了早期提出的电化学微泵中存在的优点,例如复杂的时序功率控制,需要大/长喷嘴 - 扩散器结构以及密封的限制水库。这种微型电路控制,无需机械移动部件,适用于开发低功耗和紧凑的微泵。实验结果表明了我们的微泵的泵送功能,基于我们的粗糙度梯度设计和微通道中的周期性电解 - 泡沫生成连续推动液体前进。

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