IEEE Trans Ultrason Ferroelectr Freq Control. 2016 Oct;63(10):1601-1607. doi: 10.1109/TUFFC.2016.2558583.
Surface acoustic waves (SAWs) are versatile tools to manipulate fluids at small scales for microfluidics and biological applications. A nonexhaustive list of operations that can be performed with SAW includes sessile droplet displacement, atomization, division, and merging but also the actuation of fluids embedded in microchannels or the manipulation of suspended particles. However, each of these operations requires a specific design of the wave generation system, the so-called interdigitated transducers (IDTs). Depending on the application, it might indeed be necessary to generate focused or plane, propagating or standing, and aligned or shifted waves. Furthermore, the possibilities offered by more complex wave fields such as acoustical vortices for particle tweezing and liquid twisting cannot be explored with classical IDTs. In this paper, we show that the inverse filter technique coupled with an IDTs array enables us to synthesize all classical wave fields used in microfluidics and biological applications with a single multifunctional platform. It also enables us to generate swirling SAWs, whose potential for the on-chip synthesis of tailored acoustical vortices has been demonstrated lately. The possibilities offered by this platform are illustrated by performing many operations successively on sessile droplets with the same system.
表面声波(SAWs)是在微流控和生物应用中在小尺度上操纵流体的多功能工具。可以使用 SAW 执行的操作的非详尽列表包括固定液滴的位移、雾化、分裂和合并,但也包括嵌入微通道中的流体的致动或悬浮颗粒的操纵。然而,这些操作中的每一个都需要特定的波生成系统设计,即所谓的叉指换能器(IDTs)。根据应用的不同,确实可能需要生成聚焦或平面、传播或驻波,以及对齐或偏移的波。此外,复杂波场(例如用于颗粒夹持和液体扭曲的声涡旋)提供的可能性无法用经典 IDTs 来探索。在本文中,我们表明,逆滤波器技术与 IDTs 阵列相结合,使我们能够用单个多功能平台来合成微流控和生物应用中使用的所有经典波场。它还使我们能够产生旋转表面声波,最近已经证明了其在芯片上合成定制声涡旋的潜力。通过使用相同的系统对固定液滴连续执行许多操作来说明该平台的可能性。