纳米技术
磁场
微流控
纳米磁铁
智能材料
材料科学
马朗戈尼效应
物理
对流
磁化
机械
量子力学
作者
Huan Wang,Binbin Xu,Yong‐Lai Zhang,Pavana Siddhartha Kollipara,Shaofeng Liu,Linhan Lin,Qi‐Dai Chen,Yuebing Zheng,Hong‐Bo Sun
出处
期刊:Nano Letters
[American Chemical Society]
日期:2021-02-08
卷期号:21 (4): 1628-1635
被引量:27
标识
DOI:10.1021/acs.nanolett.0c04165
摘要
Remote manipulation of a micromachine under an external magnetic field is significant in a variety of applications. However, magnetic manipulation requires that either the target objects or the fluids should be ferromagnetic or superparamagnetic. To extend the applicability, we propose a versatile optical printing technique termed femtosecond laser-directed bubble microprinting (FsLDBM) for on-demand magnetic encoding. Harnessing Marangoni convection, evaporation flow, and capillary force for long-distance delivery, near-field attraction, and printing, respectively, FsLDBM is capable of printing nanomaterials on the solid-state substrate made of arbitrary materials. As a proof-of-concept, we actuate a 3D polymer microturbine under a rotating magnetic field by implementing γ-Fe2O3 nanomagnets on its blade. Moreover, we demonstrate the magnetic encoding on a living daphnia and versatile manipulation of the hybrid daphnia. With its general applicability, the FsLDBM approach provides opportunities for magnetic control of general microstructures in a variety of applications, such as smart microbots and biological microsurgery.
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