微尺度化学
微加工
小型化
纳米技术
材料科学
表面微加工
液晶
聚合
聚合物
3D打印
智能材料
机械工程
工程类
光电子学
复合材料
制作
病理
数学教育
医学
替代医学
数学
作者
Sébastien Dominici,Keynaz Kamranikia,Karine Mougin,Arnaud Spangenberg
出处
期刊:Micromachines
[Multidisciplinary Digital Publishing Institute]
日期:2023-01-01
卷期号:14 (1): 124-124
被引量:2
摘要
The miniaturization of tools is an important step in human evolution to create faster devices as well as precise micromachines. Studies around this topic have allowed the creation of small-scale objects capable of a wide range of deformation to achieve complex tasks. Molecular arrangements have been investigated through liquid crystal polymer (LCP) to program such a movement. Smart polymers and hereby liquid crystal matrices are materials of interest for their easy structuration properties and their response to external stimuli. However, up until very recently, their employment at the microscale was mainly limited to 2D structuration. Among the numerous issues, one concerns the ability to 3D structure the material while controlling the molecular orientation during the polymerization process. This review aims to report recent efforts focused on the microstructuration of LCP, in particular those dealing with 3D microfabrication via two-photon polymerization (TPP). Indeed, the latter has revolutionized the production of 3D complex micro-objects and is nowadays recognized as the gold standard for 3D micro-printing. After a short introduction highlighting the interest in micromachines, some basic principles of liquid crystals are recalled from the molecular aspect to their implementation. Finally, the possibilities offered by TPP as well as the way to monitor the motion into the fabricated microrobots are highlighted.
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