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Sequential shrink photolithography for plastic microlens arrays

机译:塑料微透镜阵列的顺序收缩光刻

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摘要

Endeavoring to push the boundaries of microfabrication with shrinkable polymers, we have developed a sequential shrink photolithography process. We demonstrate the utility of this approach by rapidly fabricating plastic microlens arrays. First, we create a mask out of the children’s toy Shrinky Dinks by simply printing dots using a standard desktop printer. Upon retraction of this pre-stressed thermoplastic sheet, the dots shrink to a fraction of their original size, which we then lithographically transfer onto photoresist-coated commodity shrink wrap film. This shrink film reduces in area by 95% when briefly heated, creating smooth convex photoresist bumps down to 30 µm. Taken together, this sequential shrink process provides a complete process to create microlenses, with an almost 99% reduction in area from the original pattern size. Finally, with a lithography molding step, we emboss these bumps into optical grade plastics such as cyclic olefin copolymer for functional microlens arrays.
机译:为了扩大可收缩聚合物的微细加工界限,我们开发了顺序收缩光刻工艺。我们通过快速制造塑料微透镜阵列证明了这种方法的实用性。首先,我们只需使用标准的台式打印机打印点,就可以用儿童玩具“收缩粉”创建一个遮罩。收缩该预应力的热塑性片材后,点收缩到其原始尺寸的一小部分,然后我们将其光刻转移到涂有光刻胶的商品收缩包装膜上。短暂加热后,该收缩膜的面积减少了95%,从而形成了平滑的凸型光刻胶凸点,厚度低至30 µm。总而言之,这种顺序的收缩过程提供了一个完整的过程来创建微透镜,与原始图案尺寸相比,其面积减少了近99%。最后,通过光刻成型步骤,我们将这些凸点压印到光学级塑料中,例如用于功能性微透镜阵列的环烯烃共聚物。

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