Antireflective grassy surface on glass substrates with self-masked dry etching

Author:

Song Young Min,Park Gyeong Cheol,Kang Eun Kyu,Yeo Chan Il,Lee Yong Tak

Abstract

Abstract Although recently developed bio-inspired nanostructures exhibit superior optic performance, their practical applications are limited due to cost issues. We present highly transparent glasses with grassy surface fabricated with self-masked dry etch process. Simultaneously generated nanoclusters during reactive ion etch process with simple gas mixture (i.e., CF4/O2) enables lithography-free, one-step nanostructure fabrication. The resulting grassy surfaces, composed of tapered subwavelength structures, exhibit antireflective (AR) properties in 300 to 1,800-nm wavelength ranges as well as improved hydrophilicity for antifogging. Rigorous coupled-wave analysis calculation provides design guidelines for AR surface on glass substrates.

Publisher

Springer Science and Business Media LLC

Subject

Condensed Matter Physics,General Materials Science

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