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一种用于便携式微流控应用的“现场 n 玩”模块化泵。

A "place n play" modular pump for portable microfluidic applications.

出版信息

Biomicrofluidics. 2012 Mar;6(1):14118-1411816. doi: 10.1063/1.3692770. Epub 2012 Mar 9.

Abstract

This paper presents an easy-to-use, power-free, and modular pump for portable microfluidic applications. The pump module is a degassed particle desorption polydimethylsiloxane (PDMS) slab with an integrated mesh-shaped chamber, which can be attached on the outlet port of microfluidic device to absorb the air in the microfluidic system and then to create a negative pressure for driving fluid. Different from the existing monolithic degassed PDMS pumps that are generally restricted to limited pumping capacity and are only compatible with PDMS-based microfluidic devices, this pump can offer various possible configures of pumping power by varying the geometries of the pump or by combining different pump modules and can also be employed in any material microfluidic devices. The key advantage of this pump is that its operation only requires the user to place the degassed PDMS slab on the outlet ports of microfluidic devices. To help design pumps with a suitable pumping performance, the effect of pump module geometry on its pumping capacity is also investigated. The results indicate that the performance of the degassed PDMS pump is strongly dependent on the surface area of the pump chamber, the exposure area and the volume of the PDMS pump slab. In addition, the initial volume of air in the closed microfluidic system and the cross-linking degree of PDMS also affect the performance of the degassed PDMS pump. Finally, we demonstrated the utility of this modular pumping method by applying it to a glass-based microfluidic device and a PDMS-based protein crystallization microfluidic device.

摘要

本文提出了一种易于使用、无需电源且模块化的泵,适用于便携式微流控应用。该泵模块是一个脱气的粒子解吸聚二甲基硅氧烷(PDMS)平板,具有集成的网格状腔室,可以连接在微流控装置的出口端口上,以吸收微流控系统中的空气,然后产生负压来驱动流体。与现有的整体式脱气 PDMS 泵不同,这些泵通常受到有限的泵送能力的限制,并且仅与基于 PDMS 的微流控装置兼容,这种泵可以通过改变泵的几何形状或组合不同的泵模块来提供各种可能的泵送功率配置,并且也可以在任何材料的微流控装置中使用。这种泵的主要优点是其操作仅需要用户将脱气 PDMS 平板放置在微流控装置的出口端口上。为了帮助设计具有合适泵送性能的泵,还研究了泵模块几何形状对其泵送能力的影响。结果表明,脱气 PDMS 泵的性能强烈依赖于泵腔的表面积、PDMS 泵平板的暴露面积和体积。此外,封闭微流控系统中空气的初始体积和 PDMS 的交联程度也会影响脱气 PDMS 泵的性能。最后,我们通过将其应用于玻璃基微流控装置和 PDMS 基蛋白质结晶微流控装置,展示了这种模块化泵送方法的实用性。

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