材料科学
辐射冷却
静电纺丝
制作
复合数
纳米纤维
辐射传输
光电子学
复合材料
膜
功率密度
消散
纳米材料
电子设备和系统的热管理
主动冷却
工作(物理)
被动冷却
纳米技术
光催化
光伏系统
耐久性
热辐射
光子学
透射率
灵活性(工程)
选择性表面
辐射
铝
化学工程
传热
能量转换效率
作者
Yangmo Liu,Weihao Zhai,Qingxue Wang,Yingfei Xin,Yang Deng,Chongyang Fu,S. Hui,Xiaoxiong Wang,Hanbin Wang,Shuye Zhang
标识
DOI:10.1021/acsami.5c19477
摘要
High Resolution Image Download MS PowerPoint Slide In this study, a flexible inorganic silica nanofiber membrane was developed. This weather resistant fabric has excellent passive radiation cooling capabilities. It possesses abundant silica-air contact surfaces and Si–O bonds, leading to high solar spectral reflectance and mid-infrared spectral emissivity. Under direct sunlight, flexible inorganic silica nanofiber membrane achieves a temperature reduction of 7–8 °C compared to a control without relying on silver or aluminum foils as background layers, yielding an average radiative cooling power density of 66 W/m 2 . Through the electrospinning preparation process, the prepared nanofiber membrane has good flexibility and can be applied to passive heat dissipation applications on the surfaces of buildings. Unlike photonic crystals, organic membranes, and coatings, flexible inorganic silica nanofiber membranes are characterized by a simple, cost-effective, and scalable production process, offering durability and efficiency for mass production. This work introduces a novel fabrication method for inorganic radiative coolers, providing new insights into achieving enhanced daytime passive radiative cooling performance by using inorganic materials.
科研通智能强力驱动
Strongly Powered by AbleSci AI