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On-chip high speed microrobot made of Ni-Si composite structure with three-dimensionally patterned surface

机译:用三维图案化表面制成的片上高速微机器,由三维图案化

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This paper presents the high speed microrobot actuation driven by permanent magnet in a microfluidic chip. The comprehensive analysis of fluid force, the optimum design and its fabrication was conducted to reduce the fluid force on the magnetically driven microrobot by attaching riblet shape on the microrobot. The Ni and Si composite fabrication was employed to form the optimum riblet shape on the Ni based microrobot by anisotropic Si wet etching and deep reactive ion etching. The evaluation experiments show the microrobot can actuate up to 100 Hz, which is 10 times higher than the original microrobot. In addition, since the microrobot was covered by Si, which is bio-compatible, it can be applied to cell manipulation without harm.
机译:本文介绍了在微流体芯片中的永磁体驱动的高速微机器致动。通过将Riblet形状附着在微吸管上,进行了对流体力,最佳设计及其制造的综合分析,以减少磁驱动微管中的流体力。通过各向异性Si湿法蚀刻和深反应离子蚀刻,使用Ni和Si复合制造在基于Ni的微生物上形成最佳Riblet形状。评估实验表明微毒池可以致动高达100Hz,比原始微米的10倍。另外,由于Si覆盖了微毒素,这是生物兼容的,因此它可以应用于细胞操作而不会造成伤害。

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