4.8 Article

Self-Powered Rewritable Electrochromic Display based on WO3-x Film with Mechanochemically Synthesized MoO3-y Nanosheets

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 13, Issue 17, Pages 20326-20335

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c01959

Keywords

self-powered; rewritable displays; electrochromic; mechanochemical; molybdenum oxide nanosheets

Funding

  1. National Science Foundation of China [61631166004, 51902250]
  2. Fundamental Research Funds for the Central Universities [xzy012019002]
  3. National Postdoctoral Program for Innovative Talents [BX201700185]
  4. Natural Science Basic Research Plan in Shaanxi Province of China [2020JQ-035]
  5. Shenzhen Science and Technology Program [KQTD20180411143514543]
  6. Shenzhen DRC project [[2018]1433]

Ask authors/readers for more resources

This study developed MoO3-y/WO3-x films based on MoO3-y nanosheets, which exhibit good visual comfort and high optical modulation performance, as well as a self-powered electrochromic device driven by internal chemical potential. Additionally, an ionic writing board with excellent visual display quality and self-powered characteristics was also introduced.
Electrochromic displays with bistable color states provide a promising means toward transparent human-machine interfaces. However, the need for external power and the weak optical modulation in the visible light region of most electrochromic devices hinder their practical applications in displays. Here we prepare the MoO3-y/WO3-x films based on MoO3-y nanosheets, which show a dark blue color that matches the response of the eye and meets visual comfort standards compared to pure WO3-x film. By introducing the highly transparent Al3+ ion hydrogel layer, a convenient electrochromic device driven by the internal chemical potential has been designed. The device based on the MoO3-y/WO3-x film exhibits a high optical modulation in the whole visible light range and can operate at self-powered mode with fast response speed and excellent cycle stability. Moreover, we develop an ionic writing board based on the MoO3-y/WO3-x film to surmount the fixed display information issue in conventional electrochromic displays. The ionic writing board exhibits excellent visual display quality and realizes arbitrary writing with a self-powered characteristic. This work provides a simple mechanochemical synthesis procedure of MoO3-y nanosheets and an ingenious design of self-powered electrochromic devices, which will enable the development of next-generation high-performance electrochromic displays.

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