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用于能量存储和显示应用的锂离子辅助超快充电双电极智能窗

Lithium-Ion-Assisted Ultrafast Charging Double-Electrode Smart Windows with Energy Storage and Display Applications.

作者信息

Ma Qian, Zhang Hui, Chen Jinxing, Wu Weiwei, Dong Shaojun

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin 130022, China.

University of Science and Technology of China, Hefei, Anhui 230026, China.

出版信息

ACS Cent Sci. 2020 Dec 23;6(12):2209-2216. doi: 10.1021/acscentsci.0c01149. Epub 2020 Oct 28.

Abstract

Lithium-ion-assisted ultrafast charging double-electrode smart windows with energy storage and a fluorescence display device (FTO/PB/Ru@SiO||Ru@SiO/WO/FTO) based on double electrochromic electrodes (cathode and anode) (FSDECEs) have been designed and fabricated. Here, Prussian blue (PB) and WO are selected as the electrochromic cathode and anode, respectively. There is a synergistic effect and a large potential difference between the two electrodes. They could be simultaneously and rapidly bleached after being connected with each other. Also, the fluorescence intensity of Ru@SiO nanoparticles (NPs) could be regulated by the fluorescence resonance energy transfer effect (FRET). After discharging, the two electrochromic electrodes in the bleached state can be recharged by a Mg-O battery with a FeN single atomic catalyst to quickly recover the colored state. The double electrochromic electrodes can reversibly alter between coloring and bleaching states only by connecting and disconnecting the electrodes. The fluorescence intensity of FSDECEs can switch between quenching and emission, thus endowing the "on" and "off" functions. The system is concise, environmentally friendly, and easy to operate. The proposed FSDECEs demonstrate high fluorescence contrast, a fast response time, and long-term stability. Such an ingenious design of fluorescence switching based on the double electrochromic electrode in a single cell sheds light on next-generation transparent, portable, and self-powered electrochromic devices and electronic equipment.

摘要

基于双电致变色电极(阴极和阳极)(FSDECEs)设计并制备了具有储能功能的锂离子辅助超快充电双电极智能窗以及荧光显示装置(FTO/PB/Ru@SiO||Ru@SiO/WO/FTO)。在此,分别选择普鲁士蓝(PB)和WO作为电致变色阴极和阳极。两个电极之间存在协同效应和较大的电位差。它们相互连接后可同时快速褪色。此外,Ru@SiO纳米颗粒(NPs)的荧光强度可通过荧光共振能量转移效应(FRET)进行调节。放电后,处于褪色状态的两个电致变色电极可通过带有FeN单原子催化剂的Mg-O电池进行充电,以快速恢复着色状态。双电致变色电极仅通过连接和断开电极就能在着色和褪色状态之间可逆地改变。FSDECEs的荧光强度可在猝灭和发射之间切换,从而赋予“开”和“关”功能。该系统简洁、环保且易于操作。所提出的FSDECEs具有高荧光对比度、快速响应时间和长期稳定性。这种基于单电池中双电致变色电极的荧光切换巧妙设计为下一代透明、便携式和自供电电致变色器件及电子设备提供了思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8bb/7760464/f8cd260d1d67/oc0c01149_0005.jpg

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