首页> 外文会议>International Congress on Applications of Lasers Electro-Optics >ANTIREFLECTIVE COPPER SURFACES FABRICATED BY LOW-COST NANOSECOND LASERS FOR EFFICIENT PHOTOTHERMAL CONVERSION AND DESALINATION
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ANTIREFLECTIVE COPPER SURFACES FABRICATED BY LOW-COST NANOSECOND LASERS FOR EFFICIENT PHOTOTHERMAL CONVERSION AND DESALINATION

机译:由低成本的纳秒激光器制造的抗反射铜表面,用于有效的光热转换和脱盐

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Surfaces with efficient photothermal conversion have great value in both science and industry. In this study, large-area hierarchical micro- and nanostructures with high light absorptance over a wide spectrum range from ultraviolet (UV) to the near-infrared (NIR) region were fabricated on copper surfaces by a low-cost green nanosecond (ns) laser system. By optimizing the morphology of laser-induced surface structures, the average light absorptance in the wavelength range of 220~800 nm and 220~2500 nm can be as high as 98.9% and 91.9%, respectively. Moreover, the laser-processed surfaces demonstrated a photothermal conversion efficiency of more than 52% under 15 sun illuminations. We also showed that the desalination efficiency was greatly improved when the prepared surfaces were used as the solar energy harvesting surfaces in the solar energy driven desalination system.
机译:高效的光热转换的表面在科学和工业中具有很大的价值。在该研究中,通过低成本的绿色纳米末(NS)在铜表面上制造了从紫外(UV)到近红外(UV)到近红外(NIR)区域的宽光谱范围内具有高光吸收的大型分层微观和纳米结构。激光系统。通过优化激光诱导的表面结构的形态,220〜800nm和220〜2500nm波长范围内的平均光吸收分别高达98.9%和91.9%。此外,激光加工的表面在15个阳光照射下显示出超过52%的光热转换效率。我们还表明,当准备好的表面用作太阳能驱动的脱盐系统中的太阳能收集表面时,脱盐效率大大提高。

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