Cost-Effective and Environmentally Friendly Mass Manufacturing of Optical Metasurfaces Towards Practical Applications and Commercialization

IF 5.3 3区 工程技术 Q1 ENGINEERING, MANUFACTURING
Junhwa Seong, Youngsun Jeon, Younghwan Yang, Trevon Badloe, Junsuk Rho
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Abstract

Optical metasurfaces consisting of two-dimensional nanostructures have rapidly developed over the past two decades thanks to their potential for use as optical components, such as metalenses or metaholograms, with ultra-compact form factors. Despite these rapid developments, major challenges for the commercialization of metasurfaces still remain: namely their mass production and use in real-life devices. A lot of effort has been made to overcome the limitations of electron beam lithography which is commonly used to fabricate metasurfaces. However, a breakthrough in mass production is still required to bring the cost of metasurfaces down into the price range of conventional optics. This review covers deep-ultraviolet lithography, nanoimprint lithography, and self-assembly-based fabrication processes that have the potential for the mass production of both cost-effective and environmentally friendly metasurfaces. We then discuss metalenses and future displays/sensors that are expected to take advantage of these mass-produced metasurfaces. The potential applications of mass-produced optical metasurfaces will open a new realm for their practical applications and commercialization.

Abstract Image

面向实际应用和商业化的成本效益和环境友好型光学超表面的大规模制造
由二维纳米结构组成的光学超表面在过去二十年中得到了迅速发展,这要归功于它们作为光学元件的潜力,如超透镜或超全息图,具有超紧凑的外形因素。尽管发展迅速,但超表面商业化的主要挑战仍然存在:即它们的大规模生产和在现实设备中的使用。电子束光刻技术通常用于制造超表面,为了克服其局限性,人们做了很多努力。然而,要将超表面的成本降低到传统光学的价格范围内,仍需要在大规模生产方面取得突破。本文综述了深紫外光刻、纳米压印光刻和基于自组装的制造工艺,这些工艺具有大规模生产成本效益和环境友好型超表面的潜力。然后我们讨论了有望利用这些大规模生产的超表面的超透镜和未来的显示器/传感器。大规模生产的光学超表面的潜在应用将为其实际应用和商业化开辟一个新的领域。
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来源期刊
CiteScore
10.30
自引率
9.50%
发文量
65
审稿时长
5.3 months
期刊介绍: Green Technology aspects of precision engineering and manufacturing are becoming ever more important in current and future technologies. New knowledge in this field will aid in the advancement of various technologies that are needed to gain industrial competitiveness. To this end IJPEM - Green Technology aims to disseminate relevant developments and applied research works of high quality to the international community through efficient and rapid publication. IJPEM - Green Technology covers novel research contributions in all aspects of "Green" precision engineering and manufacturing.
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