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Scalable electrochromic nanopixels using plasmonics

机译:使用等离子技术的可扩展电致变色纳米像素

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摘要

Plasmonic metasurfaces are a promising route for flat panel display applications due to their full color gamut and high spatial resolution. However, this plasmonic coloration cannot be readily tuned and requires expensive lithographic techniques. Here, we present scalable electrically driven color-changing metasurfaces constructed using a bottom-up solution process that controls the crucial plasmonic gaps and fills them with an active medium. Electrochromic nanoparticles are coated onto a metallic mirror, providing the smallest-area active plasmonic pixels to date. These nanopixels show strong scattering colors and are electrically tunable across >100-nm wavelength ranges. Their bistable behavior (with persistence times exceeding hundreds of seconds) and ultralow energy consumption (9 fJ per pixel) offer vivid, uniform, nonfading color that can be tuned at high refresh rates (>50 Hz) and optical contrast (>50%). These dynamics scale from the single nanoparticle level to multicentimeter scale films in subwavelength thickness devices, which are a hundredfold thinner than current displays.
机译:等离子超表面由于其全色域和高空间分辨率而成为平板显示器应用的有前途的途径。但是,这种等离激元的着色不易调节,需要昂贵的光刻技术。在这里,我们介绍了使用自底向上解决方案过程构造的可伸缩电驱动变色超颖表面,该过程控制关键的等离激元间隙并用活性介质填充它们。将电致变色纳米粒子涂在金属镜上,提供迄今为止面积最小的有源等离子像素。这些纳米像素显示强烈的散射色,并且可以在> 100 nm的波长范围内进行电可调。它们的双稳态行为(持续时间超过数百秒)和超低能耗(每个像素9 fJ)提供生动,均匀,不褪色的颜色,可以在高刷新率(> 50 Hz)和光学对比度(> 50%)时进行调整。 。在亚波长厚度设备中,这些动力学范围从单个纳米粒子级别扩展到了几厘米级别的薄膜,其厚度比当前显示器薄了一百倍。

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