| Literature DB >> 32236052 |
Yilin Chen, Jianxin Yang, Jiayin Wu, Zongbao Li, Shaojing Liu, Huiqing Zhong, Ruixue Zhou, Aiping Luo, Ho-Pui Ho, Sailing He, Xiaobo Xing, Lingling Shui.
Abstract
Optofluidic manipulation of droplets is critical in droplet-based microfluidic systems for chemistry, biology, and medicine. Here, we reported a thermocapillary microvortices-based manipulation platform for controlling oil-in-water droplets through integrating a photothermal waveguide into a microfluidic chip. The sizes and shapes of the droplets can be controlled by adjusting optical power or positions of the water-oil interface. Here, teardrop-shaped droplets, which can encapsulate and accumulate mesoscopic matters easily, were generated when the water-oil interface and the channel boundaries approached the photothermal waveguide center simultaneously. The results showed that the thermocapillary microvortices have good controllability of droplet positions, droplet volumes, and encapsulated-particle distribution and thus it will be a powerful droplet manipulation strategy for microreactors and microcapsules.Entities:
Year: 2020 PMID: 32236052 DOI: 10.1364/OL.388188
Source DB: PubMed Journal: Opt Lett ISSN: 0146-9592 Impact factor: 3.776