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基于温度敏感结构色和光热效应的无电源自清洁太阳能光探测器

Power-Free and Self-Cleaning Solar Light Detector Based on the Temperature-Sensitive Structural Color and Photothermal Effect.

作者信息

Xiong Meiyu, Sheng Yuhang, Di Yunsong, Xing Fangjian, Yu Liyan, Zhang Jinlei, Zhou Weiping, Liu Cihui, Dong Lifeng, Gan Zhixing

机构信息

Center for Future Optoelectronic Functional Materials, School of Computer and Electronic Information/School of Artificial Intelligence, Nanjing Normal University, Nanjing 210023, P. R. China.

College of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Jul 21;13(28):33566-33573. doi: 10.1021/acsami.1c09533. Epub 2021 Jul 9.

Abstract

In this work, photothermal materials are integrated with a temperature-sensitive hydrogel and structural color for visually detecting solar intensity. Inspired by the functional performance of beetles, the photothermal layer is constructed by depositing candle soot on a film of Cu nanoparticles, while the temperature-sensitive colored hydrogel is fabricated by self-assembling colloidal photonic crystals on poly(-isopropylacrylamide) (PNiPAM). The deposition of candle soot not only improves the photothermal performance but also leads to a superhydrophobic surface with a self-cleaning function. The photothermal layer absorbs sunlight and converts it into heat, which is then transferred to the hydrogel. The structural color of the hydrogel changes due to the heat-induced volume shrinkage. As the solar intensity increases from 0.62 to 1.27 kW/m, the structural color conspicuously changes from red to orange, yellow, green, cyan, and blue, with reflection peaks shifting from 640 to 460 nm accordingly. The color change is highly apparent, which can be easily observed by the naked eye, suggesting that the solar intensity can be easily detected by reading out the structural color. This power-free and self-cleaning solar sensor can work for a long period without maintenance, which is suitable for a wide application prospect, such as smart home and agriculture.

摘要

在这项工作中,光热材料与温度敏感水凝胶及结构色相结合,用于视觉检测太阳强度。受甲虫功能特性的启发,通过在铜纳米颗粒薄膜上沉积蜡烛烟灰构建光热层,而温度敏感的有色水凝胶则是通过在聚(N-异丙基丙烯酰胺)(PNiPAM)上自组装胶体光子晶体来制备。蜡烛烟灰的沉积不仅提高了光热性能,还产生了具有自清洁功能的超疏水表面。光热层吸收阳光并将其转化为热量,然后热量传递到水凝胶中。由于热诱导的体积收缩,水凝胶的结构色发生变化。随着太阳强度从0.62千瓦/平方米增加到1.27千瓦/平方米,结构色明显从红色变为橙色、黄色、绿色、青色和蓝色,反射峰相应地从640纳米移至460纳米。颜色变化非常明显,肉眼很容易观察到,这表明通过读取结构色可以轻松检测太阳强度。这种无需供电且自清洁的太阳能传感器无需维护即可长期工作,具有广泛的应用前景,如智能家居和农业领域。

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