Al-Halhouli Ala'aldeen, Far Baha El, Albagdady Ahmed, Al-Faqheri Wisam
NanoLab, School of Applied Technical Sciences, German Jordanian University (GJU), Amman 11180, Jordan.
Institut für Mikrotechnik, Technische Universität Braunschweig, Braunschweig 38106, Germany.
Micromachines (Basel). 2020 Jan 27;11(2):140. doi: 10.3390/mi11020140.
The continuous emerging of microfluidic compact disc (CD) platforms for various real-life applications motivates researchers to explore new innovative ideas towards more integrated active functions. However, microfluidic CDs have some drawbacks, including the unidirectional flow that limits the usable space for multi-stepped biological and chemical assays. In this work, a novel active and bidirectional centrifugal pump is developed and integrated on microfluidic CDs. The design of the developed pump partially replicates the designs of the conventional centrifugal pumps with a modification in the connecting channels' positions that allow the developed pump to be reversible. The main advantage of the proposed centrifugal pump is that the pumping speed can be accurately controlled during spinning or while the microfluidic CD is stationary. Performance tests show that the pumping speed can reach up to 164.93 mm/s at a pump rotational speed (impellers speed) of 4288 rpm. At that speed, 1 mL of water could be pumped in 6.06 s. To present a few of the potential applications of the centrifugal pump, flow reciprocation, bidirectional pumping, and flow switching were performed and evaluated. Results show that the developed centrifugal pump can pump 1096 µL of liquid towards the CD center at 87% pumping efficiency while spinning the microfluidic CD at 250 rpm. This novel centrifugal pump can significantly widen the range of the applicability of microfluidic CDs in advanced chemical processes and biological assays.
用于各种实际应用的微流控光盘(CD)平台不断涌现,这促使研究人员探索新的创新理念,以实现更集成的主动功能。然而,微流控光盘存在一些缺点,包括单向流动限制了多步生物和化学分析的可用空间。在这项工作中,开发了一种新型的主动式双向离心泵,并将其集成到微流控光盘上。所开发泵的设计部分复制了传统离心泵的设计,只是对连接通道的位置进行了修改,使所开发的泵具有可逆性。所提出的离心泵的主要优点是,在旋转过程中或微流控光盘静止时,泵送速度可以精确控制。性能测试表明,在泵转速(叶轮转速)为4288转/分钟时,泵送速度可达164.93毫米/秒。以该速度,1毫升水可在6.06秒内泵送完毕。为了展示离心泵的一些潜在应用,进行并评估了流动往复、双向泵送和流动切换。结果表明,在以250转/分钟旋转微流控光盘时,所开发的离心泵能够以87%的泵送效率将1096微升液体泵送至光盘中心。这种新型离心泵可显著拓宽微流控光盘在先进化学过程和生物分析中的应用范围。