材料科学
光热治疗
碳纳米管
涂层
稳健性(进化)
热的
纳米技术
纳米尺度
聚合物
光伏系统
纳米复合材料
气凝胶
复合材料
聚合物纳米复合材料
限制
碳纤维
热交换器
可扩展性
航空航天
纳米颗粒
纳米
热导率
航空航天材料
光热效应
增强碳-碳
作者
Qixun Li,Siyan Yang,Yushan Ying,Yuanbo Liu,Rongfu Wen,Nenad Miljkovic,Xuehu Ma
标识
DOI:10.1021/acsami.5c15180
摘要
Developing scalable and robust deicing coatings is essential for real-world applications, yet current coatings either suffer from intrinsic fragility or low thermal conductivity, limiting sustainability and deicing effectiveness. Here, we report a scalable and durable photothermal superhydrophobic coating coupling with enhanced thermal conductivity, engineered by embedding carbon nanotubes within a perfluoroalkoxy polymer matrix. Our design achieved 97.7% solar absorptance and 280% increased effective thermal conductivity, compared to the pure polymer matrix alone, under an optimized content of the carbon nanotubes. This coating is versatile and scalable, conforming seamlessly to flat and intricate surfaces as well as meter-scale industrial heat exchangers and radiators. Its unparalleled mechano-chemical-thermal resilience was demonstrated through a myriad of experiments. Even under low-light and ultralow-temperature conditions, the deicing performance of the coating remained outstanding as demonstrated on real power cables and residential rooftops. By harnessing clean and sustainable solar energy, the developed coating significantly reduces carbon emissions compared to conventional deicing methods and holds great potential for widespread application across various real-world scenarios.
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