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快速响应的柔性光致变色凝胶,用于自擦除可重写媒体和比色氧指示剂应用。

Fast-Response Flexible Photochromic Gels for Self-Erasing Rewritable Media and Colorimetric Oxygen Indicator Applications.

机构信息

National Engineering Research Center for Colloidal Materials, School of Chemistry and Chemical Engineering , Shandong University , Ji'nan 250100 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 3;10(39):33423-33433. doi: 10.1021/acsami.8b09825. Epub 2018 Sep 19.

Abstract

Photoreversible color switching that can change colors with fast response and high stability is urgently desired in color-on-demand applications. Yet, developing such materials has long been a significant challenge. In this work, a strategy based on the integration of TiO nanoparticle (NP) photocatalytic color switching of redox dyes and poly(vinyl alcohol) gel matrix could produce robust and flexible photochromic gels (FPGs) that exhibit fast light-responsive time and high photoreversible stability. Benefited by the soft network structures and monomeric form of redox dyes in the FPG maintained by poly(vinyl alcohol) and ethylene glycol molecules, as well as enhanced photoreductive activity of TiO NPs modified by both surface ligands and oxygen vacancies, the FPG exhibits long photoreversible switching cycles (≥50 times), decoloration in a short period of less than 8 s upon UV illumination, and recoloration in 16 min in ambient air and rapidly in 140 s upon near-infrared light illumination. Consequently, the excellent photoreversible color switching of the FPGs is highly applicable as both self-erasing rewritable media and colorimetric oxygen indicators. We believe that the current systems represent a big step forward toward practical applications, such as time-sensitive information storage, colorimetric oxygen sensor, and potentially many other technologies.

摘要

光致变色的颜色切换可以快速响应和高稳定性地改变颜色,这在按需颜色应用中是迫切需要的。然而,开发这种材料一直是一个重大挑战。在这项工作中,基于 TiO2 纳米颗粒(NP)光催化氧化还原染料的颜色切换和聚乙烯醇(PVA)凝胶基质的集成的策略,可以产生具有快速光响应时间和高光可逆稳定性的坚固灵活的光致变色凝胶(FPG)。受益于 PVA 和乙二醇分子维持的 FPG 中氧化还原染料的软网络结构和单体形式,以及通过表面配体和氧空位增强的 TiO2 NP 的光还原活性,FPG 表现出长的光可逆切换循环(≥50 次),在 UV 照射下不到 8 秒即可褪色,并在环境空气中 16 分钟重新着色,在近红外光照射下 140 秒内快速重新着色。因此,FPG 的优异光致变色颜色切换非常适用于自擦除可重写介质和比色氧指示剂。我们相信,目前的系统代表着朝着实际应用迈出的一大步,例如对时间敏感的信息存储、比色氧传感器,以及可能的许多其他技术。

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