Department of Mechanical Engineering, Pohang University of Science and Technology, Pohang, 37673, Republic of Korea.
Lab Chip. 2017 Nov 7;17(22):3891-3897. doi: 10.1039/c7lc00704c.
For highly-integrated microfluidic systems, an actuation system is necessary to control the flow; however, the bulk of actuation devices including pumps or valves has impeded the broad application of integrated microfluidic systems. Here, we suggest a microfluidic process control method based on built-in microfluidic circuits. The circuit is composed of a fluidic timer circuit and a pneumatic logic circuit. The fluidic timer circuit is a serial connection of modularized timer units, which sequentially pass high pressure to the pneumatic logic circuit. The pneumatic logic circuit is a NOR gate array designed to control the liquid-controlling process. By using the timer circuit as a built-in signal generator, multi-step processes could be done totally inside the microchip without any external controller. The timer circuit uses only two valves per unit, and the number of process steps can be extended without limitation by adding timer units. As a demonstration, an automation chip has been designed for a six-step droplet treatment, which entails 1) loading, 2) separation, 3) reagent injection, 4) incubation, 5) clearing and 6) unloading. Each process was successfully performed for a pre-defined step-time without any external control device.
对于高度集成的微流控系统,需要一个驱动系统来控制流量;然而,包括泵或阀在内的大多数驱动设备都阻碍了集成微流控系统的广泛应用。在这里,我们提出了一种基于内置微流控电路的微流控过程控制方法。该电路由一个流体计时电路和一个气动逻辑电路组成。流体计时电路是由模块化计时单元串联而成的,它们依次将高压传递到气动逻辑电路。气动逻辑电路是一个 NOR 门阵列,用于控制液体控制过程。通过使用计时电路作为内置信号发生器,可以在微芯片内部完成多步过程,而无需任何外部控制器。该计时电路每个单元仅使用两个阀,并且可以通过添加计时单元来无限扩展过程步骤的数量。作为演示,我们设计了一个自动化芯片用于进行六步液滴处理,包括 1)加载、2)分离、3)试剂注入、4)孵育、5)清除和 6)卸载。每个过程都在没有任何外部控制设备的情况下成功地按照预定的步长进行。