Fabrication of arc-shaped 3D electrodes for biomedical devices

Sinan Li,Meng Li,S Y Hui, Wenyuan Li, Wanli Cao, Wei Wen

AIM(2013)

引用 0|浏览5
暂无评分
摘要
We developed a simple, low-cost and novel method for constructing three dimensional (3D) microelectrodes in biomedical devices by utilizing low melting point metal alloy. Three dimensional electrodes have unique properties in biomedical applications such as cell lysis, electroporation, dielectrophoresis, and detection. Compared to other fabrication methods for 3D electrodes, the presented one has many advantages, such as normal experiment conditions, simple processes and low-cost equipments. Numerical analysis on electric potential distribution with different electrode configurations was presented to verify the unique field distribution of arc-shape electrodes fabricated by our method. The application of 3D electrode made by high-conductivity metal alloy microspheres was confirmed by continuous particle sorting based on dielectrophoresis (DEP). The proposed technique offers alternatives to construct 3D electrodes from 2D planer electrodes in microfluidic devices.
更多
查看译文
关键词
biomems,bioelectric phenomena,cellular biophysics,electrochemical electrodes,electrophoresis,lab-on-a-chip,melting,melting point,microelectrodes,microfabrication,microfluidics,numerical analysis,2d planer electrodes,arc-shaped 3d electrodes,biomedical applications,biomedical devices,cell lysis,continuous particle sorting,detection,dielectrophoresis,electric potential distribution,electrode configurations,electroporation,high-conductivity metal alloy microspheres,low melting point metal alloy,microfluidic devices,fabrication,lab on a chip,biomedical,force,electric fields,3d,microchannel,electrodes,metals,arc
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要