Luo Tao, Liu Sirui, Zhou Rui, Zhang Chen, Chen Dongyang, Zhan Yi, Hu Qilin, He Xi, Xie Yu, Huan Zhijie, Gao Wendi, Li Ruirui, Yuan Gongfa, Wang Yancheng, Zhou Wei
Pen-Tung Sah Institute of Micro-Nano Science and Technology, Xiamen University, Xiamen, 361102, China.
The State Key Laboratory of Fluid Power & Mechatronic Systems, Zhejiang University, Hangzhou 310027, China.
Lab Chip. 2023 Sep 13;23(18):3989-4001. doi: 10.1039/d3lc00365e.
Droplet manipulation on superhydrophobic surfaces (DMSS) without conventional pipetting is an emerging liquid handling technology, which can be potentially used for diagnostic, analysis, and synthetic processes. Despite notable progress, controlling droplet motion on superhydrophobic surfaces by contactless acoustic waves is rarely reported. Herein, we report a contactless acoustic tweezer (CAT) for DMSS based on establishing ultrasonic standing wave between an ultrasound transducer (UST) and a superhydrophobic substrate to manipulate droplets without physical contact. The CAT utilizes acoustic radiation forces to trap and move droplets on superhydrophobic surfaces, which allows for precise and controllable movement of droplets by controlling the movement of the UST. Small droplets with volume less than 20 μL can be levitated in mid-air for out-plane manipulation, and large droplets with volume up to 500 μL can be trapped for in-plane manipulation. Experimental results demonstrate the versatility of the CAT for manipulating droplets with various compositions and volumes on various superhydrophobic substrates, offering a versatile and cross-contamination-free liquid handling approach for applications, including but not limited to high-throughput surface-enhanced Raman scattering.
无需传统移液操作的超疏水表面上的液滴操控(DMSS)是一种新兴的液体处理技术,可潜在地用于诊断、分析和合成过程。尽管取得了显著进展,但通过非接触式声波控制超疏水表面上的液滴运动的报道却很少。在此,我们报道了一种用于DMSS的非接触式声镊(CAT),它基于在超声换能器(UST)和超疏水基底之间建立超声驻波来在无物理接触的情况下操控液滴。该CAT利用声辐射力在超疏水表面上捕获和移动液滴,通过控制UST的移动实现液滴的精确可控移动。体积小于20 μL的小液滴可在空气中悬浮以进行平面外操控,体积达500 μL的大液滴可被捕获以进行平面内操控。实验结果证明了CAT在各种超疏水基底上操控具有不同成分和体积的液滴的多功能性,为包括但不限于高通量表面增强拉曼散射等应用提供了一种多功能且无交叉污染的液体处理方法。