...
首页> 外文期刊>ACS applied materials & interfaces >Electrochromic Photodetectors: Toward Smarter Glasses and Nano Reflective Displays via an Electrolytic Mechanism
【24h】

Electrochromic Photodetectors: Toward Smarter Glasses and Nano Reflective Displays via an Electrolytic Mechanism

机译:电致变色光电探测器:通过电解机构朝向更智能的眼镜和纳米反射性显示器

获取原文
获取原文并翻译 | 示例
           

摘要

Electrochromic devices, serving as smart glasses, have not yet been intelligent enough to regulate lighting conditions independent of external photosensing devices. On the other hand, their bulky sandwich structures have been suffering setbacks utilized for reflective displays in an effort to compete with mature emissive displays. The key to resolve both problems lies in incorporating the photosensing function into electrochromic devices while simplifying their configuration via replacing ionic electrolytes. However, so far it has not yet been achieved because of the essential operating difference between the optoelectronic devices and the ionic devices. Herein, a concept of a smarter and thinner device: "electrochromic photodetector" is proposed to solve such problems. It is all-solid-state and electrolyte-free and operates with a simple thin metal-semiconductor-metal structure via an electrolytic mechanism. As a proof of concept, a configuration of the electrochromic photodetector is presented in this work based on a tungsten trioxide (WO3) thin film deposited on Au electrodes via facile, low-cost solution processes. The electrochromic photodetector switches between its photosensing and electrochromic functions via voltage modulation within 5 V, which is the result of the semiconductor-metal transition. The transition mechanism is further analyzed to be the voltage-triggered reversible oxygen/water vapor adsorption/intercalation from ambient air.
机译:用作智能眼镜的电致变色器件尚未智能,足以调节独立于外部光电设备的照明条件。另一方面,它们的笨重的夹层结构一直遭受用于反射显示器的挫折,以努力与成熟的发射显示器竞争。解决这两个问题的关键在于将光囊功能掺入电致变色装置,同时通过更换离子电解质来简化它们的配置。然而,到目前为止,由于光电器件和离子装置之间的基本工作差异,尚未实现。这里,提出了一种更智能和更薄的装置的概念:“电致变色光电探测器”以解决这些问题。它是全固态的,无电解质,通过电解机构与简单的薄金属半导体 - 金属结构一起操作。作为概念证据,基于通过容纳在Au电极上沉积在Au电极上的钨三氧化物(WO3)薄膜,在该工作中提出了电致变色光电探测器的构造。电致变色光电探测器通过5 V内的电压调制在其光敏和电致变色功能之间切换,这是半导体 - 金属转换的结果。进一步分析过渡机构以是环境空气的电压触发的可逆氧/水蒸气吸附/嵌入。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号