Optical Filters with Asymmetric Transmittance Depending on the Incident Angle, Produced Using Liquid Crystalline Ink (Louver LC Filters)

Author:

Takatoh Kohki1ORCID,Kobayashi Mika1,Ito Masahiro2ORCID

Affiliation:

1. Department of Electrical Engineering, Faculty of Engineering, Sanyo-Onoda City University, 1-1-1 Daigaku-dori, Sanyo-Onoda 756-0884, Japan

2. Medical Engineering Course, Department of Medical Course, Faculty of Health and Medical Science, Teikyo Heisei University, 2-51-4 Higashi-ikebukuro, Toshima-ku, Tokyo 170-8445, Japan

Abstract

In many situations in everyday life, sunlight levels need to be reduced. Optical filters with asymmetric transmittance dependent on the incident angle would be useful for sunglasses and vehicle or architectural windows, among others. Herein, we realized the production of optical filters, called “louver filters”, comprising HAN-type LC film produced using liquid crystalline ink with dichroic dyes. For the formation of the HAN-type LC film, the liquid crystalline ink was aligned on a rubbed polyimide layer and polymerized by UV irradiation. Two kinds of filters are proposed: one is a filter composed of HAN-type LC film and a polarizer, and the other is composed of two HAN-LC films with a half-wave plate between them. The dependence of the asymmetric transmittance on the incident angle was confirmed for these filters. The dependence changed depending on the pretilt angle of the alignment layers. Photographs taken with the optical filters displayed their effectiveness.

Funder

A-Step (Adaptable and Seamless Technology Transfer Program through Target-driven R&D) of the Japan Science and Technology Agency

Publisher

MDPI AG

Subject

General Materials Science

Reference30 articles.

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2. DNP (2023, August 01). Louver Array Film. Available online: https://www.global.dnp/biz/solution/products/detail/10158741_4130.html.

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5. Ito, M., Fukuda, E., Akimoto, M., Hoketsu, H., Nakazono, Y., Tohriyama, H., and Takatoh, K. (2023). Angular Dependence of Guest-Host Liquid Crystal Devices with High Pretilt Angle Using Mixture of Vertical and Horizontal Alignment Materials. Crystals, 13.

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