Tong Wei, Han Mengmeng, Ma Chen, Wu Zhen, Wang Nan, Du Ning, Xiang Tengfei, Zhu Jingshuai
Institute of Superlubricity Technology, Research Institute of Tsinghua University in Shenzhen, Shenzhen 518057, China.
School of Equipment Engineering, Shenyang Ligong University, Shenyang 110159, China.
ACS Appl Mater Interfaces. 2024 Jun 19;16(24):31567-31575. doi: 10.1021/acsami.4c04634. Epub 2024 Jun 5.
Solar energy is widely used in photovoltaic power generation as a kind of clean energy. However, the liquid film, frosting, and icing on the photovoltaic module seriously limit the efficiency of photovoltaic power generation. We developed a composite coating (Y6-NanoSH) by combining an in situ photothermal and transparent Y6 organic film with a nanosuperhydrophobic material. The Y6-NanoSH coated glass exhibited excellent optical clarity both indoors and outdoors, indicating that the coating holds great promise in anti-icing applications for photovoltaic panels. The Y6-NanoSH coating absorbs very little visible light but instead absorbs in the near-infrared region, thereby emitting heat. When exposed to sunlight, the Y6-NanoSH coated photovoltaic panel raises its surface temperature, inhibiting the growth and accumulation of ice and frost on its surface. This is achieved through a combination of photothermal emission and superhydrophobic repellency, which promotes the evaporation and rolling away of water droplets. This validates our success in developing a photothermal, transparent, and superhydrophobic coating with excellent anti-icing capabilities, suitable for use on photovoltaic panels, as well as potential applications in car windscreens, transmission lines, curtain walls, and weather radomes.
太阳能作为一种清洁能源,在光伏发电中得到了广泛应用。然而,光伏组件上的液膜、结霜和结冰严重限制了光伏发电效率。我们通过将原位光热透明Y6有机膜与纳米超疏水材料相结合,开发出了一种复合涂层(Y6-NanoSH)。涂有Y6-NanoSH的玻璃在室内和室外均表现出优异的光学清晰度,这表明该涂层在光伏板的防冰应用中具有巨大潜力。Y6-NanoSH涂层对可见光吸收极少,而是在近红外区域吸收,从而发热。当暴露在阳光下时,涂有Y6-NanoSH的光伏板会提高其表面温度,抑制其表面冰和霜的生长与积聚。这是通过光热发射和超疏水排斥性的结合实现的,促进了水滴的蒸发和滚落。这证实了我们成功开发出一种具有优异防冰能力的光热、透明且超疏水的涂层,适用于光伏板,以及在汽车挡风玻璃、输电线路、幕墙和气象雷达罩等方面的潜在应用。