材料科学
自愈水凝胶
纳米技术
荧光
结构着色
发光
伪装
压阻效应
光电子学
仿生学
计算机科学
人工智能
光学
光子晶体
物理
高分子化学
作者
Shuxin Wei,Huiyu Qiu,Huihui Shi,Wei Lü,Hao Liu,Huizhen Yan,Dachuan Zhang,Jiawei Zhang,Patrick Théato,Yen Wei,Tao Chen
出处
期刊:ACS Nano
[American Chemical Society]
日期:2021-06-01
卷期号:15 (6): 10415-10427
被引量:77
标识
DOI:10.1021/acsnano.1c02720
摘要
The active color-changing ability of many living species has inspired scientists to replicate the optical property into soft wet and tissue-like hydrogel materials. However, the color-changing processes of most reported examples are controlled by the traditional stimuli (e.g., pH, temperature, and ions), which may suffer from the residual chemical product accumulation, and have difficulty in achieving local control and integration into the commercial robots, especially when applied as biomimetic skins. Herein, inspired by the nervous (bioelectricity) control of skin color change in cephalopods, we present an electrically powered multicolor fluorescent hydrogel system with asymmetric configuration that couples thermoresponsive fluorescent hydrogel with stacked graphene assembly (SGA)-based conductive paper through luminous paint as the middle layer. Owing to the highly controllable electrical stimulus in terms of amplitude and duration, the Joule heat supplied by SGA film can be regulated locally and in real time, leading to precise and local emission color control at low voltage. It also avoids the addition of any chemicals. Furthermore, the electrically powered color-changing hydrogel system can be conveniently integrated into the commercial robots as biomimetic skins that help them achieve desirable camouflage, display, or alarming functions.
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