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使用微尺度千兆赫兹声学的夹断式液滴发生器。

Pinch-off droplet generator using microscale gigahertz acoustics.

作者信息

Zhou Yangchao, He Meihang, Zhang Haitao, Liu Bohua, Sun Chongling, Han Ziyu, Duan Xuexin

机构信息

State Key Laboratory of Precision Measuring Technology and Instruments, College of Precision Instruments and Opto-electronics Engineering, Tianjin University, Tianjin 300072, China.

出版信息

Lab Chip. 2023 Nov 7;23(22):4860-4867. doi: 10.1039/d3lc00515a.

Abstract

The generation and dispensing of microdroplets is a vital process in various fields such as biomedicine, medical diagnosis and chemistry. However, most methods still require the structures of nozzles or microchannels to assist droplet generation, which leads to limitations on system flexibility and restrictions on the size range of the generated droplets. In this paper, we propose a nozzle-free acoustic-based method for generating droplets using a gigahertz (GHz) bulk acoustic wave (BAW). Unlike most of the acoustofluidic approaches, the proposed method produces the droplet by pinching-off the liquid column generated by the acoustic body force at the oil-water interface. Benefitting from the focused acoustic energy and small footprint of the device, four orders of magnitude (ranging from 2 μm to 1800 μm) of droplet size could be produced by controlling the working time and power of the device. We also demonstrated cell encapsulation in the droplet and a high cell viability was achieved. The proposed acoustic-based droplet generation method exhibits capacity for generating droplets with a wide size range, versatility toward different viscosities, as well as biocompatibility for handling viable samples, which shows potential in miniaturization and scalability.

摘要

微滴的产生与分配是生物医学、医学诊断及化学等诸多领域中的关键过程。然而,大多数方法仍需借助喷嘴或微通道结构来辅助液滴生成,这导致系统灵活性受限,且对所产生液滴的尺寸范围形成限制。在本文中,我们提出了一种基于无喷嘴声学原理的方法,利用千兆赫兹(GHz)体声波(BAW)来生成液滴。与大多数声流体方法不同,该方法通过在油水界面处 pinch-off 由声体力产生的液柱来产生液滴。得益于聚焦的声能以及该装置较小的占地面积,通过控制装置的工作时间和功率,可产生四个数量级(范围从 2μm 至 1800μm)的液滴尺寸。我们还展示了细胞在液滴中的封装,并实现了较高的细胞活力。所提出的基于声学的液滴生成方法展现出能够生成宽尺寸范围液滴的能力、对不同粘度的通用性以及处理活样品的生物相容性,这在小型化和可扩展性方面显示出潜力。

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