2017
DOI: 10.1002/sdtp.11696
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40‐4: Moth‐eye Anti‐reflection Surface for Sunlight Readable Flexible Displays

Abstract: A broadband anti‐reflection surface with moth‐eye structure for sunlight readable flexible displays is demonstrated. The proposed nanostructure exhibits excellent anti‐reflection performance (luminous reflectance 0.23%), low haze (0.95%), great flexibility (curve radius <8 mm), high hardness (>3H) and self‐cleaning characteristics. A numerical model is developed to simulate and optimize the nanostructure. Excellent agreement between simulation and experiment is obtained.

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Cited by 2 publications
(2 citation statements)
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“…Kontziampasis et al [19] stated that the reflectance decreased as the height of nanostructures increased on the PMMA substrate by the plasma nanotexturing. Tan et al [24] also found that nanostructures created by the plasma etching had the drastically decreased reflectance when the nanostructures on the glass substrates with the high height of nanowires in the bundle. The reduction of spacing distance between the nanowires in a bundle was beneficial for the complete rebound of droplets, and the high height of nanowires contributed to decreasing the reflectance.…”
Section: Antireflection Property By Plasma Nanotexture With Au Film Maskmentioning
confidence: 97%
“…Kontziampasis et al [19] stated that the reflectance decreased as the height of nanostructures increased on the PMMA substrate by the plasma nanotexturing. Tan et al [24] also found that nanostructures created by the plasma etching had the drastically decreased reflectance when the nanostructures on the glass substrates with the high height of nanowires in the bundle. The reduction of spacing distance between the nanowires in a bundle was beneficial for the complete rebound of droplets, and the high height of nanowires contributed to decreasing the reflectance.…”
Section: Antireflection Property By Plasma Nanotexture With Au Film Maskmentioning
confidence: 97%
“…Серийно производимые дисплеи с высокой считываемостью информации при солнечном освещении Для хорошего считывания информации с дисплея при ярком солнечном освещении команда из представителей университета Центральной Флориды (США) и двух тайваньских университетов разработала противоотражающее покрытие с коэффициентом отражения 0,23% (одно из самых низких значений) для всего видимого спектра и менее 0,1% при длине волны более 550 нм [4]. Это бионическая разработка -покрытие имеет структуру глаза мотылька (рис.4).…”
Section: считываемость информации с дисплеяunclassified