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Highly Transparent Conducting Nanopaper for Solid State Foldable Electrochromic Devices

机译:固态可折叠电致变色器件的高透明导电纳米纸

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摘要

It is of great challenge to develop a transparent solid state electrochromic device which is foldable at the device level. Such devices require delicate designs of every component to meet the stringent requirements for transparency, foldability, and deformation stability. Meanwhile, nanocellulose, a ubiquitous natural resource, is attracting escalating attention recently for foldable electronics due to its extreme flexibility, excellent mechanical strength, and outstanding transparency. In this article, transparent conductive nanopaper delivering the state-of-the-art electro-optical performance is achieved with a versatile nanopaper transfer method that facilitates junction fusing for high-quality electrodes. The highly compliant nanopaper electrode with excellent electrode quality, foldability, and mechanical robustness suits well for the solid state electrochromic device that maintains good performance through repeated folding, which is impossible for conventional flexible electrodes. A concept of camouflage wearables is demonstrated using gloves with embedded electrochromics. The discussed strategies here for foldable electrochromics serve as a platform technology for futuristic deformable electronics.
机译:开发在装置水平上可折叠的透明固态电致变色装置是巨大的挑战。这样的设备需要每个组件的精细设计以满足透明性,可折叠性和变形稳定性的严格要求。同时,纳米纤维素是一种无处不在的自然资源,由于其极高的柔韧性,出色的机械强度和出色的透明性,最近引起了可折叠电子设备的日益关注。在本文中,采用通用的纳米纸转移方法可实现提供最先进的电光性能的透明导电纳米纸,该方法可促进高质量电极的结熔合。具有优异的电极质量,可折叠性和机械强度的高顺应性纳米纸电极非常适合通过重复折叠保持良好性能的固态电致变色器件,这对于传统的柔性电极是不可能的。使用带有嵌入式电致变色材料的手套演示了迷彩可穿戴设备的概念。此处讨论的可折叠电致变色技术用作未来可变形电子设备的平台技术。

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