材料科学
光热治疗
光学
光电子学
镜面反射
激光器
能量转换效率
飞秒
吸收率
纳米技术
纳米结构
太阳能
吸收(声学)
全向天线
天线(收音机)
反射率
复合材料
生态学
物理
生物
电信
计算机科学
作者
Peixun Fan,Hui Wu,Minlin Zhong,Hongjun Zhang,Benfeng Bai,Guofan Jin
出处
期刊:Nanoscale
[The Royal Society of Chemistry]
日期:2016-01-01
卷期号:8 (30): 14617-14624
被引量:124
摘要
Efficient solar energy harvesting and photothermal conversion have essential importance for many practical applications. Here, we present a laser-induced cauliflower-shaped hierarchical surface nanostructure on a copper surface, which exhibits extremely high omnidirectional absorption efficiency over a broad electromagnetic spectral range from the UV to the near-infrared region. The measured average hemispherical absorptance is as high as 98% within the wavelength range of 200–800 nm, and the angle dependent specular reflectance stays below 0.1% within the 0–60° incident angle. Such a structured copper surface can exhibit an apparent heating up effect under the sunlight illumination. In the experiment of evaporating water, the structured surface yields an overall photothermal conversion efficiency over 60% under an illuminating solar power density of ∼1 kW m−2. The presented technology provides a cost-effective, reliable, and simple way for realizing broadband omnidirectional light absorptive metal surfaces for efficient solar energy harvesting and utilization, which is highly demanded in various light harvesting, anti-reflection, and photothermal conversion applications. Since the structure is directly formed by femtosecond laser writing, it is quite suitable for mass production and can be easily extended to a large surface area.
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