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利用等离激元学实现可编程的定向颜色动力学

Programmable directional color dynamics using plasmonics.

作者信息

Kim Gyurin, Kim Doeun, Ko Soeun, Han Jang-Hwan, Kim Juhwan, Ko Joo Hwan, Song Young Min, Jeong Hyeon-Ho

机构信息

School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology, Gwangju, 61005 Republic of Korea.

Department of Semiconductor Engineering, Gwangju Institute of Science and Technology, Gwangju, 61005 Republic of Korea.

出版信息

Microsyst Nanoeng. 2024 Feb 1;10:22. doi: 10.1038/s41378-023-00635-8. eCollection 2024.

Abstract

Adaptive multicolor filters have emerged as key components for ensuring color accuracy and resolution in outdoor visual devices. However, the current state of this technology is still in its infancy and largely reliant on liquid crystal devices that require high voltage and bulky structural designs. Here, we present a multicolor nanofilter consisting of multilayered 'active' plasmonic nanocomposites, wherein metallic nanoparticles are embedded within a conductive polymer nanofilm. These nanocomposites are fabricated with a total thickness below 100 nm using a 'lithography-free' method at the wafer level, and they inherently exhibit three prominent optical modes, accompanying scattering phenomena that produce distinct dichroic reflection and transmission colors. Here, a pivotal achievement is that all these colors are electrically manipulated with an applied external voltage of less than 1 V with 3.5 s of switching speed, encompassing the entire visible spectrum. Furthermore, this electrically programmable multicolor function enables the effective and dynamic modulation of the color temperature of white light across the warm-to-cool spectrum (3250 K-6250 K). This transformative capability is exceptionally valuable for enhancing the performance of outdoor optical devices that are independent of factors such as the sun's elevation and prevailing weather conditions.

摘要

自适应多色滤光片已成为确保户外视觉设备色彩准确性和分辨率的关键组件。然而,这项技术的当前状态仍处于起步阶段,并且在很大程度上依赖于需要高电压和庞大结构设计的液晶设备。在此,我们展示了一种由多层“有源”等离子体纳米复合材料组成的多色纳米滤光片,其中金属纳米颗粒嵌入在导电聚合物纳米薄膜中。这些纳米复合材料在晶圆级采用“无光刻”方法制造,总厚度低于100纳米,并且它们固有地展现出三种显著的光学模式,伴随着产生明显二向色性反射和透射颜色的散射现象。在此,一个关键成果是所有这些颜色都可以通过施加小于1伏的外部电压以3.5秒的切换速度进行电操控,涵盖整个可见光谱。此外,这种电可编程多色功能能够有效且动态地调制从暖色调到冷色调光谱(3250 K - 6250 K)的白光色温。这种变革性能力对于提升户外光学设备的性能尤为重要,这些设备不受诸如太阳高度和当前天气状况等因素的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51a1/10831043/f39d363d1936/41378_2023_635_Fig1_HTML.jpg

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