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3D Fabrication of Fully Iron Magnetic Microrobots

机译:3D完全铁磁性微型磁铁的制造

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摘要

Biocompatibility and high responsiveness to magnetic fields are fundamental requisites to translate magnetic small-scale robots into clinical applications. The magnetic element iron exhibits the highest saturation magnetization and magnetic susceptibility while exhibiting excellent biocompatibility characteristics. Here, a process to reliably fabricate iron microrobots by means of template-assisted electrodeposition in 3D-printed micromolds is presented. The 3D molds are fabricated using a modified two-photon absorption configuration, which overcomes previous limitations such as the use of transparent substrates, low writing speeds, and limited depth of field. By optimizing the geometrical parameters of the 3D molds, metallic structures with complex features can be fabricated. Fe microrollers and microswimmers are realized that demonstrate motion at ≈20 body lengths per second, perform 3D motion in viscous environments, and overcome higher flow velocities than those of "conventional 3D printed helical microswimmers." The cytotoxicity of these microrobots is assessed by culturing them with human colorectal cancer (HCT116) cells for four days, demonstrating their good biocompatibility characteristics. Finally, preliminary results regarding the degradation of iron structures in simulated gastric acid liquid are provided.
机译:对磁场的生物相容性和高响应性是将磁性小型机器人转化为临床应用的基本必需品。磁性元件铁在表现出优异的生物相容性特性的同时表现出最高的饱和磁化强度和磁化率。这里,提出了一种通过在3D印刷微胶片中通过模板辅助电沉积可靠地制造铁微孔的方法。使用改进的双光子吸收配置制造3D模具,其克服了先前的限制,例如使用透明基板,低写入速度和有限的景深。通过优化3D模具的几何参数,可以制造具有复杂特征的金属结构。 Fe Microollers和MicroSwimmers实现了以每秒的Mepth Migher长度展示运动,在粘性环境中执行3D运动,并克服比“传统3D印刷螺旋微温器”更高的流速。通过用人结肠直肠癌(HCT116)细胞培养4天来评估这些微生物的细胞毒性,证明了它们的良好生物相容性特性。最后,提供了关于模拟胃酸液中铁结构的降解的初步结果。

著录项

  • 来源
    《Small》 |2019年第16期|共9页
  • 作者单位

    Institute of Robotics and Intelligent Systems ETH Zurich Zurich CH-8092 Switzerland;

    Institute of Robotics and Intelligent Systems ETH Zurich Zurich CH-8092 Switzerland;

    Robotics Engineering Department Daegu Gyeongbuk Institute of Science and Technology (DGIST) 711-873 Daegu South Korea;

    Institute of Robotics and Intelligent Systems ETH Zurich Zurich CH-8092 Switzerland;

    Institute of Robotics and Intelligent Systems ETH Zurich Zurich CH-8092 Switzerland;

    Robotics Engineering Department Daegu Gyeongbuk Institute of Science and Technology (DGIST) 711-873 Daegu South Korea;

    Robotics Engineering Department Daegu Gyeongbuk Institute of Science and Technology (DGIST) 711-873 Daegu South Korea;

    Institute of Robotics and Intelligent Systems ETH Zurich Zurich CH-8092 Switzerland;

    Institute of Robotics and Intelligent Systems ETH Zurich Zurich CH-8092 Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    direct laser writing; iron electrodeposition; magnetic microrobots; template-assisted deposition; upstream motion;

    机译:直接激光书写;铁电沉积;磁性微型器;模板辅助沉积;上游运动;

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