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飞秒激光处理金属的光谱吸收控制及其在太阳能热装置中的应用。

Spectral absorption control of femtosecond laser-treated metals and application in solar-thermal devices.

作者信息

Jalil Sohail A, Lai Bo, ElKabbash Mohamed, Zhang Jihua, Garcell Erik M, Singh Subhash, Guo Chunlei

机构信息

The Institute of Optics, University of Rochester, Rochester, NY 14627 USA.

出版信息

Light Sci Appl. 2020 Feb 4;9:14. doi: 10.1038/s41377-020-0242-y. eCollection 2020.

Abstract

Direct femtosecond (fs) laser processing is a maskless fabrication technique that can effectively modify the optical, electrical, mechanical, and tribological properties of materials for a wide range of potential applications. However, the eventual implementation of fs-laser-treated surfaces in actual devices remains challenging because it is difficult to precisely control the surface properties. Previous studies of the morphological control of fs-laser-processed surfaces mostly focused on enhancing the uniformity of periodic microstructures. Here, guided by the plasmon hybridisation model, we control the morphology of surface nanostructures to obtain more control over spectral light absorption. We experimentally demonstrate spectral control of a variety of metals [copper (Cu), aluminium (Al), steel and tungsten (W)], resulting in the creation of broadband light absorbers and selective solar absorbers (SSAs). For the first time, we demonstrate that fs-laser-produced surfaces can be used as high-temperature SSAs. We show that a tungsten selective solar absorber (W-SSA) exhibits excellent performance as a high-temperature solar receiver. When integrated into a solar thermoelectric generation (TEG) device, W-SSA provides a 130% increase in solar TEG efficiency compared to untreated W, which is commonly used as an intrinsic selective light absorber.

摘要

直接飞秒(fs)激光加工是一种无掩模制造技术,可有效改变材料的光学、电学、机械和摩擦学性能,具有广泛的潜在应用。然而,飞秒激光处理过的表面最终应用于实际设备仍具有挑战性,因为难以精确控制表面性能。先前关于飞秒激光加工表面形态控制的研究大多集中在提高周期性微结构的均匀性上。在此,在等离激元杂交模型的指导下,我们控制表面纳米结构的形态,以更好地控制光谱光吸收。我们通过实验证明了对多种金属[铜(Cu)、铝(Al)、钢和钨(W)]的光谱控制,从而制造出宽带光吸收器和选择性太阳能吸收器(SSA)。我们首次证明飞秒激光加工的表面可作为高温SSA。我们表明,钨选择性太阳能吸收器(W-SSA)作为高温太阳能接收器表现出优异的性能。当集成到太阳能热电发电(TEG)装置中时,与通常用作本征选择性光吸收器的未处理钨相比,W-SSA使太阳能TEG效率提高了130%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8343/7000826/b6f6438eed9b/41377_2020_242_Fig1_HTML.jpg

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