Yang Daozheng, Zhou Bing, Han Gaojie, Feng Yuezhan, Ma Jianmin, Han Jian, Liu Chuntai, Shen Changyu
Key Laboratory of Materials Processing and Mold Ministry of Education, National Engineering Research Center for Advanced Polymer Processing Technology, Zhengzhou University, Zhengzhou, Henan 450002, China.
Key Laboratory for Micro-/Nano-Optoelectronic Devices, Ministry of Education, School of Physics and Electronics, Hunan University, Changsha 410022, China.
ACS Appl Mater Interfaces. 2021 Feb 24;13(7):8909-8918. doi: 10.1021/acsami.0c20202. Epub 2021 Feb 11.
Flexible transparent heaters based on photothermal energy conversion are highly desired for next-generation electronic devices. However, how to balance the photothermal conversion efficiency and transparency is still a huge challenge. In this work, we demonstrate a flexible polycarbonate (PC) film with balanced photothermal energy conversion performance and transparency obtained from the spraying polypyrrole (PPy)-modified TiCT MXene (MXene@PPy) layer. Due to the synergistic light-to-heat effects of MXene and the attached PPy nanoparticles, the resulted transparent film heater (MP-PC) can obtain a satisfying photothermal conversion performance (47.5 °C at 100 mW/cm) at a low spraying density of MXene and thus show an effective transmittance of 51.61%, simultaneously. Moreover, the photothermal conversion performance reveals an outstanding stability without significant deterioration after exposing to an outdoor environment for seven months. Besides, arising from the excellent surface electrical resistance (413 Ω/sq), the MP-PC film also exhibits an effective Joule heating capacity with a high heating temperature of 108 °C at 24 V input voltage. As one of the promising applications, the MP-PC film exhibits the effectiveness and feasibility as a light-triggered thermal therapy film for human skin in cold environments.
基于光热能量转换的柔性透明加热器是下一代电子设备的迫切需求。然而,如何平衡光热转换效率和透明度仍然是一个巨大的挑战。在这项工作中,我们展示了一种柔性聚碳酸酯(PC)薄膜,它通过喷涂聚吡咯(PPy)修饰的TiCT MXene(MXene@PPy)层获得了平衡的光热能量转换性能和透明度。由于MXene与附着的PPy纳米颗粒的协同光热效应,所得的透明薄膜加热器(MP-PC)在低MXene喷涂密度下即可获得令人满意的光热转换性能(100 mW/cm²时为47.5 °C),同时有效透过率为51.61%。此外,光热转换性能显示出出色的稳定性,暴露在室外环境七个月后无明显劣化。此外,由于优异的表面电阻(413 Ω/sq),MP-PC薄膜在24 V输入电压下还表现出有效的焦耳热能力,加热温度高达108 °C。作为有前景的应用之一,MP-PC薄膜在寒冷环境中作为人体皮肤的光触发热疗薄膜表现出有效性和可行性。