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Angular solar absorptance and thermal stability of W/WAlN/WAlON/Al2O3-based solar selective absorber coating

机译:W / WAlN / WAlON / Al2O3基太阳能选择性吸收剂涂层的角吸收率和热稳定性

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In this paper, we report the solar absorptance property of a new tandem absorber consisting of layers W/WAlN/WAlON/Al2O3 that holds promise for solar thermal energy harvesting. The coating was prepared by DC/RF magnetron sputtering on stainless steel substrate. The performance of the film was investigated by measuring the reflectance spectra in the wavelength range of 250-2500 nm and most importantly by varying the incident angle from 18 degrees to 68 degrees. The effect of thermal annealing on the optical properties, microstructure and morphology of the solar selective absorber coating was also explored. The thermal annealing of the coating at 350 degrees C till 550 h in air did not result in any significant change in the spectral properties of the absorber coating. The excellent thermal stability and wide range of angular absorptance of this multilayer coating indicate the potential for application as selective coating in mid temperature photothermal conversion systems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,我们报告了由W / WAlN / WAlON / Al2O3层组成的新型串联吸收器的太阳吸收特性,该吸收器有望收集太阳能热能。通过在不锈钢基板上进行DC / RF磁控管溅射制备涂层。通过测量在250-2500 nm波长范围内的反射光谱来研究薄膜的性能,最重要的是,将入射角从18度更改为68度。还研究了热退火对太阳能选择性吸收剂涂层的光学性能,微观结构和形态的影响。涂层在空气中在350摄氏度至550小时的热退火不会导致吸收剂涂层的光谱特性发生任何显着变化。这种多层涂层的优异的热稳定性和宽的角吸收率范围表明它有可能在中温光热转化系统中用作选择性涂层。 (C)2016 Elsevier Ltd.保留所有权利。

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