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使用双侧相控阵使多对悬浮液滴合并

Coalescence of multiple pairs of levitated droplets using dual-side phased arrays.

作者信息

Li Jianqing, Goddard Nicholas J, Songsaeng Ruamsiri, Gupta Ruchi

机构信息

School of Chemistry, University of Birmingham, Birmingham B15 2TT, UK.

School of Chemistry, University of Birmingham, Birmingham B15 2TT, UK.

出版信息

Ultrason Sonochem. 2025 May;116:107327. doi: 10.1016/j.ultsonch.2025.107327. Epub 2025 Mar 31.

Abstract

Acoustic levitation in air and contactless coalescence of levitated droplets using acoustic forces are of great significance to chemical and biological reactions. The state-of-the-art is levitation and coalescence of 3 pairs of droplets achieved via dual-side phased arrays. However, there are no reports on the general design principles for manipulation and coalescence of > 3 pairs of droplets. Equally, there are no reports on sequential coalescence of more than two columns of droplets, which is essential for performing reactions requiring addition of more than two reagents. In this paper, we showed that wide traps are more suited than narrow traps for the coalescence of droplets. In wide traps, the acoustic energy was expanded along the direction of merging of droplets. Additionally, uniform traps created in this work by distributing energy between traps increased the number of droplets that can be levitated. We have reported a new algorithm named DS-PAT based on direct search method to overcome the limitations of existing algorithms. Using wide uniform traps and the DS-PAT algorithm, for the first time, a stable coalescence of up to 6 pairs of levitated droplets was achieved. To measure experimental acoustic fields during the merging process, a custom-built acoustic scanning setup was employed, which showed good consistency with simulations. Subsequently, DS-PAT was used to design the sequential coalescence of 4 columns of droplets with 2 droplets in each column. This was then applied to study the well-known oscillatory Belousov-Zhabotinsky (BZ) reaction. This work gives general principles of designing acoustic fields for stable coalescence of columns of droplets and introduces a global algorithm for dual-side phased arrays, paving the way for stable and efficient chemical and biological reactions in airborne droplets.

摘要

空气中的声悬浮以及利用声学力实现悬浮液滴的非接触合并,对于化学和生物反应具有重要意义。目前的技术水平是通过双侧相控阵实现3对液滴的悬浮与合并。然而,对于大于3对液滴的操控与合并的通用设计原则尚无报道。同样,对于超过两列液滴的顺序合并也没有相关报道,而这对于进行需要添加两种以上试剂的反应至关重要。在本文中,我们表明宽阱比窄阱更适合液滴合并。在宽阱中,声能沿液滴合并方向扩展。此外,通过在阱之间分配能量在本工作中创建的均匀阱增加了可悬浮液滴的数量。我们报道了一种基于直接搜索法的名为DS - PAT的新算法,以克服现有算法的局限性。利用宽均匀阱和DS - PAT算法,首次实现了多达6对悬浮液滴的稳定合并。为了测量合并过程中的实验声场,采用了定制的声学扫描装置,其与模拟结果显示出良好的一致性。随后,DS - PAT被用于设计4列液滴的顺序合并,每列有2个液滴。然后将其应用于研究著名的振荡贝洛索夫 - 扎博廷斯基(BZ)反应。这项工作给出了设计用于液滴列稳定合并的声场的一般原则,并引入了一种用于双侧相控阵的全局算法,为空气中液滴中稳定高效的化学和生物反应铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab0b/11999590/d566323fe63a/gr1.jpg

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