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Spectrally selective absorber coating of WAlN/WAlON/Al2O3 for solar thermal applications

机译:WAlN / WAlON / Al2O3的光谱选择性吸收剂涂层,用于太阳能热应用

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摘要

A novel WAlN/WAlON/Al2O3 coating was successfully deposited on stainless steel (SS) substrate using reactive DC and RF magnetron sputtering. Excellent spectrally selective property with a high absorptance of 0.958 in the solar spectrum region and low emittance of 0.08 in the infrared region were achieved by tailoring the target power, deposition time and the reactive flow rates of N-2 and O-2. In the present solar selective coating, W layer acts as a back reflector and diffusion barrier, WAlN as the main absorber layer, WAlON as the semi-absorber layer, whereas the topmost Al2O3 layer works as an anti-reflecting layer. In reference to the thermal stability, the absorber deposited on SS substrates exhibited high solar selectivity (alpha/epsilon) of 0.920/0.11, when heat treated in air up to 500 degrees C for 2 hrs. Taken together, the present study demonstrated that the WAlN/WAlON/Al2O3-based selective absorbing coating with excellent thermal stability could be a promising material for photo-thermal conversion at temperatures of up to 500 degrees C. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用反应性直流和射频磁控溅射在不锈钢(SS)基板上成功沉积了新型WAlN / WAlON / Al2O3涂层。通过调整目标功率,沉积时间以及N-2和O-2的反应流速,可以实现出色的光谱选择性能,在太阳光谱区域的吸收率高达0.958,在红外区域的吸收率仅为0.08,低。在本发明的太阳能选择性涂层中,W层充当后反射层和扩散阻挡层,WAlN充当主吸收层,WAlON充当半吸收层,而最顶层的Al 2 O 3层充当减反射层。关于热稳定性,当在高达500摄氏度的空气中热处理2个小时时,沉积在SS基板上的吸收剂具有0.920 / 0.11的高太阳选择性(α/ε)。综上所述,本研究表明,具有优异热稳定性的WAlN / WAlON / Al2O3基选择性吸收涂层可能是在高达500摄氏度的温度下进行光热转化的有前途的材料。(C)2016 Elsevier BV版权所有保留。

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