Omnidirectional color wavelength tuning of stretchable chiral liquid crystal elastomers.

IF 19.4 1区 物理与天体物理 Q1 Physics and Astronomy Light, science & applications Pub Date : 2024-05-22 DOI:10.1038/s41377-024-01470-w
Seungmin Nam, Wontae Jung, Jun Hyuk Shin, Su Seok Choi
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Abstract

Wavelength-tunable structural colors using stimuli-responsive materials, such as chiral liquid crystals (CLCs), have attracted increasing attention owing to their high functionality in various tunable photonic applications. Ideally, on-demand omnidirectional wavelength control is highly desirable from the perspective of wavelength-tuning freedom. However, despite numerous previous research efforts on tunable CLC structural colors, only mono-directional wavelength tuning toward shorter wavelengths has been employed in most studies to date. In this study, we report the ideally desired omnidirectional wavelength control toward longer and shorter wavelengths with significantly improved tunability over a broadband wavelength range. By using areal expanding and contractive strain control of dielectric elastomer actuators (DEAs) with chiral liquid crystal elastomers (CLCEs), simultaneous and omnidirectional structural color-tuning control was achieved. This breakthrough in omnidirectional wavelength control enhances the achievable tuning freedom and versatility, making it applicable to a broad range of high-functional photonic applications.

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可拉伸手性液晶弹性体的全向彩色波长调节。
由于手性液晶(CLC)等刺激响应材料在各种可调谐光子应用中的高功能性,其波长可调谐的结构颜色已引起越来越多的关注。理想情况下,从波长调谐自由度的角度来看,按需全方位波长控制是非常理想的。然而,尽管以前对可调谐 CLC 结构颜色进行了大量研究,但迄今为止,大多数研究都只采用了单向波长调谐,即对较短波长进行调谐。在本研究中,我们报告了理想中的全向波长控制,可在宽带波长范围内对较长和较短波长进行调谐,可调谐性显著提高。通过使用手性液晶弹性体(CLCE)对介电弹性体致动器(DEA)进行等距膨胀和收缩应变控制,实现了同时和全方位的结构调色控制。这一全向波长控制方面的突破提高了可实现的调谐自由度和多功能性,使其适用于广泛的高功能光子应用。
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来源期刊
CiteScore
27.00
自引率
2.60%
发文量
331
审稿时长
20 weeks
期刊介绍: Light: Science & Applications is an open-access, fully peer-reviewed publication.It publishes high-quality optics and photonics research globally, covering fundamental research and important issues in engineering and applied sciences related to optics and photonics.
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