光热治疗
微流控
材料科学
光流学
波导管
纳米颗粒
纳米技术
光功率
光热效应
光电子学
流量控制(数据)
光学
激光器
物理
计算机网络
计算机科学
作者
Yupeng Cheng,Jianxin Yang,Zongbao Li,Debin Zhu,Xiang Cai,Xiaowen Hu,Wen Huang,Xiaobo Xing
摘要
A convenient and easily controllable microfluidic system was proposed based on a photothermal device. Here, graphene oxide was assembled on an optical waveguide, which could serve as a miniature heat source to generate a microbubble and to control dynamic behaviors of flow by adjusting optical power at the micrometer scale. Micro/nanoparticles were used to demonstrate the trace of fluid flow around the microbubble, which displayed the ability of the flow to capture, transmit, and rotate particles in thermal convection. Correspondingly, three-dimensional theoretical simulation combining thermodynamics with hydrodynamics analyzed the distribution of the velocity field induced by the microbubble for collection and driving of particles. Furthermore, the photothermal waveguide would be developed into a microbubble-based device in the manipulation or transmission of micro/nanoparticles.
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