Li Dege, Cao Yi, Huang Bingfang, Han Molong, Wu Xinlei, Sun Qiang, Zheng Chao, Zhao Lilong, Ma Chi, Jin Hui, Wang Xiaolong, Liu Yonghong, Zhang Yanzhen
College of Mechanical and Electronic Engineering, China University of Petroleum (East China), Qingdao 266580, China.
Centre of Micro-photonics, Swinburne University of Technology, Melbourne 3122, Australia.
Langmuir. 2021 Jan 26;37(3):1297-1305. doi: 10.1021/acs.langmuir.0c03368. Epub 2021 Jan 11.
The precise and effective generation of micron-sized droplets is one of the most common and important issues for droplet-based microfluidics. Active droplet generation makes use of additional energy input in promoting interfacial instabilities for droplet generation. Here, we report a new technique for the active generation of femtoliter droplets in microfluidic systems using confined interfacial vibration (CIV). The CIV is formed at the orifice of a traditional inkjet nozzle first by pushing the liquid out and then pulling it back. Droplets are pinched off during the withdrawal process, and this is different from the current active droplet generation techniques, which only monodirectionally push the liquid out. Droplets with radius ranging from ca. 1 to 28 μm can be actively generated by CIV at an orifice with radius 30 μm, distinguishing from conventional active generation techniques in which the droplets are always comparable or slightly bigger than the orifice. Experimental results showed that the droplet volume can be customized by controlling the intensity of the CIV. The inherent digital nature of the inkjet technique enables easy and precise regulating of the droplet volume, making it seamlessly compatible with the digital microfluidic systems.
精确且高效地产生微米级液滴是基于液滴的微流控技术中最常见且重要的问题之一。主动式液滴生成利用额外的能量输入来促进界面不稳定性以实现液滴生成。在此,我们报告一种在微流控系统中利用受限界面振动(CIV)主动生成飞升级液滴的新技术。CIV首先通过将液体推出然后再拉回,在传统喷墨喷嘴的孔口处形成。在液体撤回过程中液滴被夹断,这与当前仅单向推出液体的主动式液滴生成技术不同。通过在半径为30μm的孔口处利用CIV可主动生成半径范围约为1至28μm的液滴,这与传统主动生成技术不同,传统技术中液滴总是与孔口相当或略大于孔口。实验结果表明,通过控制CIV的强度可以定制液滴体积。喷墨技术固有的数字特性使得能够轻松且精确地调节液滴体积,使其与数字微流控系统无缝兼容。