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基于三氧化钨单水合物纳米片和普鲁士白的大规模多功能电致变色-能量存储器件。

Large-Scale Multifunctional Electrochromic-Energy Storage Device Based on Tungsten Trioxide Monohydrate Nanosheets and Prussian White.

机构信息

State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences , No. 1295 Dingxi Road, Shanghai 200050, P.R. China.

University of Chinese Academy of Sciences , No. 19A Yuquan Road, Beijing 100049, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Sep 6;9(35):29872-29880. doi: 10.1021/acsami.7b08656. Epub 2017 Aug 23.

Abstract

A high-performance electrochromic-energy storage device (EESD) is developed, which successfully realizes the multifunctional combination of electrochromism and energy storage by constructing tungsten trioxide monohydrate (WO·HO) nanosheets and Prussian white (PW) film as asymmetric electrodes. The EESD presents excellent electrochromic properties of broad optical modulation (61.7%), ultrafast response speed (1.84/1.95 s), and great coloration efficiency (139.4 cm C). In particular, remarkable cyclic stability (sustaining 82.5% of its initial optical modulation after 2500 cycles as an electrochromic device, almost fully maintaining its capacitance after 1000 cycles as an energy storage device) is achieved. The EESD is also able to visually detect the energy storage level via reversible and fast color changes. Moreover, the EESD can be combined with commercial solar cells to constitute an intelligent operating system in the architectures, which would realize the adjustment of indoor sunlight and the improvement of physical comfort totally by the rational utilization of solar energy without additional electricity. Besides, a scaled-up EESD (10 × 11 cm) is further fabricated as a prototype. Such promising EESD shows huge potential in practically serving as electrochromic smart windows and energy storage devices.

摘要

一种高性能电色-储能器件(EESD)被开发出来,它通过构建氧化钨单水合物(WO·HO)纳米片和普鲁士白(PW)薄膜作为非对称电极,成功地实现了电变色和储能的多功能组合。该 EESD 呈现出出色的电变色性能,包括宽的光学调制(61.7%)、超快的响应速度(1.84/1.95 s)和高的着色效率(139.4 cm C)。特别是,它实现了显著的循环稳定性(作为电致变色器件经过 2500 次循环后,其初始光学调制维持在 82.5%,作为储能器件经过 1000 次循环后,电容几乎完全保持)。该 EESD 还能够通过可逆和快速的颜色变化来可视化地检测储能水平。此外,EESD 可以与商业太阳能电池结合构成架构中的智能操作系统,通过合理利用太阳能来完全调节室内阳光,提高物理舒适度,而无需额外的电力。此外,还进一步制造了一个放大的 EESD(10×11 cm)作为原型。这种有前途的 EESD 在实际用作电致变色智能窗户和储能设备方面具有巨大的潜力。

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