Su Xiaojing, Li Hongqiang, Lai Xuejun, Zheng Longzhu, Chen Zhonghua, Zeng Songshan, Shen Kuangyu, Sun Luyi, Zeng Xingrong
College of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, China.
Key Lab of Guangdong Province for High Property and Functional Polymer Materials, Guangzhou 510640, China.
ACS Appl Mater Interfaces. 2020 Mar 25;12(12):14578-14587. doi: 10.1021/acsami.0c00344. Epub 2020 Mar 10.
Thermochromic films with intriguing functionalities have great potential in soft actuators, heat storage devices, and interactive interface sensors. Inspired by the unique features of bird feathers (such as Nicobar pigeon, Anna hummingbird, mandarin duck, etc.), a superhydrophobic thermochromic film (STF) with robust healability is proposed for the first time through sandwiching an electric heater between a top thermochromic layer and a bottom poly(vinylidene fluoride--hexafluoropropylene) (PVDF-HFP) substrate. The STF exhibits fast and reversible color conversions of blue-pink-yellow under a low input power and has a superhydrophobic property with a contact angle of 155°. Furthermore, owing to the strong dynamic dipole-dipole interactions between the polar CF groups of flexible PVDF-HFP chains, the STF possesses a robust healing capability of structure and conductivity. By means of the temperature difference generated by the objects contacting (finger, iron, and water) as a stimulus, the STFs achieve tactile imaging and writing record with advantages of transient display, automatic erasure, and excellent reusability. Additionally, the STF-based anti-counterfeiting security labels with superhydrophobicity and three-state color switching simultaneously realize facile distinguishment and difficult forgery. The findings conceivably stand out as a new methodology to fabricate functional thermochromic materials for innovative applications.
具有有趣功能的热致变色薄膜在软致动器、蓄热装置和交互式界面传感器方面具有巨大潜力。受鸟类羽毛(如尼科巴鸠、安娜氏蜂鸟、鸳鸯等)独特特征的启发,首次通过在顶部热致变色层和底部聚偏二氟乙烯-六氟丙烯(PVDF-HFP)基板之间夹入一个电加热器,提出了一种具有强大自愈能力的超疏水热致变色薄膜(STF)。该STF在低输入功率下呈现出快速且可逆的蓝-粉-黄颜色转换,并且具有155°的接触角,表现出超疏水性能。此外,由于柔性PVDF-HFP链的极性CF基团之间存在强烈的动态偶极-偶极相互作用,STF具有强大的结构和导电性自愈能力。通过物体接触(手指、铁和水)产生的温差作为刺激,STF实现了触觉成像和书写记录,具有瞬态显示、自动擦除和出色的可重复使用性等优点。此外,基于STF且同时具有超疏水性和三态颜色切换功能的防伪安全标签实现了易于区分和难以伪造的特点。这些发现有望成为制造用于创新应用的功能性热致变色材料的一种新方法。