首页 /研究 /Fabrication and magnetic control of bacteria-inspired robotic microswimmers
OTHER

Fabrication and magnetic control of bacteria-inspired robotic microswimmers

U Kei Cheang, Dheeraj S. Roy, Jun Hee Lee, Min Jun Kim

发表年份
2010
引用次数
86

摘要

A biomimetic, microscale system using the mechanics of swimming bacteria has been fabricated and controlled in a low Reynolds number fluidic environment. The microswimmer consists of a polystyrene microbead conjugated to a magnetic nanoparticle via a flagellar filament using avidin-biotin linkages. The flagellar filaments were isolated from the bacterium, Salmonella typhimurium. Propulsion energy was supplied by an external rotating magnetic field designed in an approximate Helmholtz configuration. Further, the finite element analysis software, COMSOL MULTIPHYSICS, was used to develop a simulation of the robotic devices within the magnetic controller. The robotic microswimmers exhibited flagellar propulsion in two-dimensional magnetic fields, which demonstrate controllability of the biomimetically designed devices for future biomedical applications.

关键词

PropulsionMultiphysicsMagnetotactic bacteriaMagnetic nanoparticlesNanoroboticsFluidicsMagnetic fieldMicroscale chemistryControllabilityNanotechnology

相关论文

查看 OTHER 分类全部论文