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Fluorinated ethylene-propylene: a complementary alternative to PDMS for nanoimprint stamps

机译:氟化乙烯-丙烯:替代PDMS的纳米压印邮票

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摘要

Polydimethylsiloxane (PDMS) is used by many for nanoimprint applications due to its affordability, ease of preparation, mechanical flexibility, compatibility with imprint resists and transparency to UV light. However PDMS is notoriously flexible, tacky and permeable to air. Here fluorinated ethylene-propylene (FEP) is considered as a viable and versatile alternative material for nanoimprint stamps. FEP possesses many of the desirable nanoimprint attributes associated with PDMS but crucially also features a range of complementary characteristics, including an order of magnitude more mechanical strength allowing it to handle higher loads than PDMS, an intrinsically non-stick surface and is compatible with oxygen sensitive resists. Unlike elastomeric polymers, FEP is glassy so patterning may be realised via hot embossing. Not only is this a facile and rapid means of physical structuring but it also facilitates combinatorial patterning, providing a versatility beyond that of traditional casting materials. Due to the intrinsically slow creep of FEP both micro-and nanopatterning are successfully performed sequentially. Feature sizes from 45 nm were successfully realised via the hot-embossing method. To further demonstrate the potential of the material, a modified computer numerical control machine is used. It is capable of photo-, nanoimprint- and laser lithography in conjunction with patterned FEP foils. The tool is used to perform pattern transfer into a developmental nanoimprint resist from Micro Resist Technology, mr-NIL210 XP, and Nano SU-8 3005 negative tone photo resist from MicroChem. Ultimately three-tier lithography is performed in unison and advantageous step-and-repeat performance is achieved with fabricated FEP imprint stamps as they demould more compliantly and resist pressure and contamination better than PDMS.
机译:聚二甲基硅氧烷(PDMS)因其价格合理,易于制备,机械柔韧性,与压印抗蚀剂的相容性以及对紫外线的透明性而被许多人用于纳米压印应用。然而,众所周知,PDMS具有柔韧性,粘性和透气性。在此,氟化乙烯-丙烯(FEP)被认为是纳米压印邮票的可行且用途广泛的替代材料。 FEP具有与PDMS相关的许多理想的纳米压印属性,但至关重要的是还具有一系列互补特性,包括机械强度高一个数量级,使其可以承受比PDMS高的负载,本质上不粘的表面并与氧敏感兼容抵抗。与弹性体聚合物不同,FEP是玻璃状的,因此可以通过热压花实现图案化。这不仅是一种便捷,快速的物理构造方法,而且还可以促进组合图案的形成,从而提供超越传统铸造材料的多功能性。由于FEP本质上缓慢的蠕变,因此成功地依次进行了微图案和纳米图案。通过热压印方法成功实现了45 nm的特征尺寸。为了进一步证明材料的潜力,使用了改进的计算机数控机床。它能够与图案化的FEP箔片一起进行光敏,纳米压印和激光光刻。该工具用于将图案转移到Micro Resist Technology的显影纳米压印光刻胶,mr-NIL210 XP和MicroChem的Nano SU-8 3005负性光刻胶中。最终,三层光刻可以一致地执行,并且由于预制的FEP压模印模更顺应性脱模,并且比PDMS更好地抵抗压力和污染,因此可以实现优越的分步重复性能。

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