光子学
纳米压印光刻
材料科学
光刻
纳米光刻
自愈水凝胶
平版印刷术
纳米技术
制作
电子束光刻
光子晶体
光子超材料
光电子学
抵抗
高分子化学
病理
医学
替代医学
图层(电子)
作者
Byoungsu Ko,Nara Jeon,Jaekyung Kim,Hyunjung Kang,Junhwa Seong,Suhyeon Yun,Trevon Badloe,Junsuk Rho
标识
DOI:10.1038/s41378-023-00609-w
摘要
Abstract Conventional photonic devices exhibit static optical properties that are design-dependent, including the material’s refractive index and geometrical parameters. However, they still possess attractive optical responses for applications and are already exploited in devices across various fields. Hydrogel photonics has emerged as a promising solution in the field of active photonics by providing primarily deformable geometric parameters in response to external stimuli. Over the past few years, various studies have been undertaken to attain stimuli-responsive photonic devices with tunable optical properties. Herein, we focus on the recent advancements in hydrogel-based photonics and micro/nanofabrication techniques for hydrogels. In particular, fabrication techniques for hydrogel photonic devices are categorized into film growth, photolithography (PL), electron-beam lithography (EBL), and nanoimprint lithography (NIL). Furthermore, we provide insights into future directions and prospects for deformable hydrogel photonics, along with their potential practical applications.
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