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激光高分子聚合物纳米制造技术及应用进展(特邀) 被引量:2
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作者 张琛 朱洁 +6 位作者 章裕 王凯歌 赵伟 杨亚平 冯晓强 陈浩伟 白晋涛 《光子学报》 EI CAS CSCD 北大核心 2020年第11期126-143,共18页
激光高分子聚合物纳米制造技术是当前国际精密制造领域研究的热点技术.基于双光子、多光子非线性效应以及光激发-光抑制机制,激光制造技术打破了光学衍射极限的限制,能够实现纳米精度的三维立体复杂结构的无掩模快速制造,有力地为相关... 激光高分子聚合物纳米制造技术是当前国际精密制造领域研究的热点技术.基于双光子、多光子非线性效应以及光激发-光抑制机制,激光制造技术打破了光学衍射极限的限制,能够实现纳米精度的三维立体复杂结构的无掩模快速制造,有力地为相关领域的纳米结构制造需求提供了解决方案.本文简单回顾了激光高分子聚合物纳米制造技术的发展历程,详细阐述了激光技术实现纳米精度制造的原理及其相应的技术特点,介绍了其在微纳光学、光信息存储、仿生材料、生物医学诊疗等多个领域的新发展及应用情况,展望了激光高分子聚合物纳米制造技术未来面临的主要挑战. 展开更多
关键词 激光制造技术 高分子聚合物 双/多光子直写 束激光超分辨 光聚合 功能纳米材料 衍射极限
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Femtosecond-laser direct writing 3D micro/nano-lithography using VIS-light oscillator 被引量:3
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作者 Antanas BUTKUS Edvinas SKLIUTAS +1 位作者 Darius GAILEVIČIUS Mangirdas MALINAUSKAS 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3270-3276,共7页
Here we report a femtosecond laser direct writing(a precise 3D printing also known as two-photon polymerization lithography) of hybrid organic-inorganic SZ2080^(TM)pre-polymer without using any photo-initiator and app... Here we report a femtosecond laser direct writing(a precise 3D printing also known as two-photon polymerization lithography) of hybrid organic-inorganic SZ2080^(TM)pre-polymer without using any photo-initiator and applying ~100 fs oscillator operating at 517 nm wavelength and 76 MHz repetition rate. The proof of concept was experimentally demonstrated and benchmarking 3D woodpile nanostructures, micro-scaffolds, free-form micro-object “Benchy” and bulk micro-cubes are successfully produced. The essential novelty underlies the fact that non-amplified laser systems delivering just 40-500 p J individual pulses are sufficient for inducing localized cross-linking reactions within hundreds of nanometers in cross sections. And it is opposed to the prejudice that higher pulse energies and lower repetition rates of amplified lasers are necessary for structuring non-photosensitized polymers. The experimental work is of high importance for fundamental understanding of laser enabled nanoscale 3D additive manufacturing and widens technology’ s field of applications where the avoidance of photo-initiator is preferable or is even a necessity, such as micro-optics, nano-photonics, and biomedicine. 展开更多
关键词 laser direct writing two-photon polymerization multi-photon lithography 3D printing additive manufacturing SZ2080TM MICROSTRUCTURES NANOTECHNOLOGY
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