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Multifunctional transition and temperature-responsive contact lenses
Engineering and TechnologyLight: Science & Applications

Multifunctional transition and temperature-responsive contact lenses

A. E. Salih and H. Butt

Discover the innovative world of multifunctional contact lenses developed by Ahmed E. Salih and Haider Butt. These groundbreaking lenses feature UV-transition and temperature-responsive capabilities, darkening upon UV exposure and offering impressive blue light blockage. Designed to tackle ophthalmic challenges posed by UV radiation and temperature fluctuations, these lenses represent a significant step forward in eye care technology.... show more
Abstract
Smart contact lenses have recently gained traction due to their functionalization as noninvasive diagnostic and therapeutic wearables that can address several ocular diseases. Herein, multifunctional contact lenses exhibiting UV-transition and temperature-responsive capabilities were developed utilizing chromogenic materials that were integrated simultaneously into poly(2-hydroxyethyl methacrylate) (pHEMA) contact lenses. The functionalities of the contact lenses were optically evaluated in both their activated and non-activated states. Transition contact lenses offered excellent UV and blue light blocking capabilities (~45%) at their inactive states. When activated via UV exposure, the transparent lenses darkened instantaneously and absorbed portions of the visible light spectrum. The absorption intensity and transient discoloration of the transition lenses relied primarily on the utilized photochromic material. Likewise, the temperature-responsive contact lenses exhibited distinct colorimetric variations in response to temperature changes within the physiological range (33–38 °C). The maximum sensitivity of the thermochromic lens was 8% transmitted light per Celsius degree shift. Physiochemical and morphological analysis indicated the adequacy of the contact lenses. Hence, the multifunctional contact lenses can be deployed as smart wearables to manage ophthalmic deficiencies that are deterred by UV radiations and variations in ocular surface temperature.
Publisher
Light: Science & Applications
Published On
Jan 31, 2023
Authors
Ahmed E. Salih, Haider Butt
Tags
contact lenseschromogenic materialsUV radiationtemperature-responsiveophthalmic deficienciesvisibility enhancementpoly(2-hydroxyethyl methacrylate)
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