The Emerging Frontiers and Applications of High-Resolution 3D Printing

微加工 纳米技术 3D打印 微尺度化学 材料科学 平版印刷术 纳米压印光刻 制作 光刻 纳米光刻 光电子学 复合材料 医学 替代医学 数学教育 数学 病理
作者
Mao Mao,Jiankang He,Xiao Li,Bing Zhang,Lei Qi,Yaxiong Liu,Dichen Li
出处
期刊:Micromachines [MDPI AG]
卷期号:8 (4): 113-113 被引量:158
标识
DOI:10.3390/mi8040113
摘要

Over the past few decades, there has been an increasing interest in the fabrication of complex high-resolution three-dimensional (3D) architectures at micro/nanoscale. These architectures can be obtained through conventional microfabrication methods including photolithography, electron-beam lithography, femtosecond laser lithography, nanoimprint lithography, etc. However, the applications of these fabrication methods are limited by their high costs, the generation of various chemical wastes, and their insufficient ability to create high-aspect-ratio 3D structures. High-resolution 3D printing has recently emerged as a promising solution, as it is capable of building multifunctional 3D constructs with optimal properties. Here we present a review on the principles and the recent advances of high-resolution 3D printing techniques, including two-photon polymerization (TPP), projection microstereoLithography (PµSL), direct ink writing (DIW) and electrohydrodynamic printing (EHDP). We also highlight their typical applications in various fields such as metamaterials, energy storage, flexible electronics, microscale tissue engineering scaffolds and organ-on-chips. Finally, we discuss the challenge and perspective of these high-resolution 3D printing techniques in technical and application aspects. We believe that high-resolution 3D printing will eventually revolutionize the microfabrication processes of 3D architectures with high product quality and diversified materials. It will also find applications in a wide scope.
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