首页> 外文会议>International WLT Conference on Lasers in Manufacturing >Fabrication of Scaffolds and Micro-Lenses Array in a Negative Photopolymer SZ2080 by Multi-Photon Polymerization and Four- Femtosecond-Beam Interference
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Fabrication of Scaffolds and Micro-Lenses Array in a Negative Photopolymer SZ2080 by Multi-Photon Polymerization and Four- Femtosecond-Beam Interference

机译:通过多光子聚合和四飞秒束干扰在负光聚合物SZ2080中制造支架和微透镜阵列

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Multi-photon polymerization using interference of several laser beams is a promising technique for mass fabrication of 3D periodic micro-structures over large areas, which can be used in micro-biology (artificial scaffolds), photonics (photonics crystals), micro-optics (micro-lenses). While the direct laser writing (DLW) approach is a relatively slow process, use of the interference field can be a significantly faster alternative route of parallel processing when periodic structures are produced by a single laser exposure. We present examples of scaffolds and micro-lens arrays fabricated over a large area by multi-photon polymerization in a negative ultra low shrinkage and biocompatible photopolymer SZ2080 (ORMOSIL) using four-beam interference of a femtosecond laser.
机译:使用多个激光束的干扰的多光子聚合是大规模制造大型面积的3D周期性微结构的有希望的技术,可用于微生物学(人工脚手架),光子(光子晶体),微光学(微透镜)。虽然直接激光写入(DLW)方法是相对缓慢的过程,但是当通过单个激光曝光产生周期性结构时,使用干扰场的使用可以是明显更快的并行处理路径。我们通过使用Femtosecond激光的四光束干涉,通过多光子聚合在大面积中通过多光子聚合提供在大面积上制造的支架和微透镜阵列的示例。使用飞秒激光器的四射线干涉,通过多光子聚合在阳性低收缩和生物相容性光聚合物SZ2080(Ormosil)中。

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