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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Optical properties and thermal stability of pulsed-sputter-deposited AlxOy/Al/AlxOy multilayer absorber coatings
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Optical properties and thermal stability of pulsed-sputter-deposited AlxOy/Al/AlxOy multilayer absorber coatings

机译:脉冲溅射沉积的AlxOy / Al / AlxOy多层吸收剂涂层的光学性能和热稳定性

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摘要

Spectrally selective AlxOy/Al/AlxOy multilayer absorber coatings were deposited on copper (Cu) and molybdenum (Mo) substrates using a pulsed sputtering system. The Al targets were sputtered using asymmetric bipolar-pulsed DC generators in Ar+O-2 and Ar plasmas to deposit an AlxOy/Al/AlxOy coating. The compositions and thicknesses of the individual component layers were optimized to achieve high solar absorptance (alpha = 0.950-0.970) and low thermal emittance (epsilon = 0.05-0.08). The X-ray diffraction data in thin film mode showed an amorphous structure of the AlxOy/Al/AlxOy coating. The X-ray photoelectron spectroscopy data of the AlxOy/Al/AlxOy multilayer absorber indicated that the AlxOy layers present in the coating were non-stoichiometric. The optical constants (n and k) of the multilayer absorber were determined from the spectroscopic ellipsometric data. Drude's free-electron model was used for generating the theoretical dispersion of optical constants for Al films, while the Tauc-Lorentz model was used for modeling optical properties of the dielectric AlxOy layers. In order to study the thermal stability of the AlxOy/Al/AlxOy coatings, they were subjected to heat treatment (in air and vacuum) at different temperatures and durations. The multilayer absorber deposited on Cu substrates exhibited high solar selectivity (alpha/epsilon) of 0.901/0.06 even after heat-treatment in air up to 400 degrees C for 2 h. At 450 degrees C, the solar selectivity decreased significantly on Cu substrates (e.g., alpha/epsilon = 0.790/0.07). The coatings deposited on Mo substrates were thermally stable up to 800 degrees C in vacuum with a solar selectivity of 0.934/0.05. The structural stability of the absorber coatings heat treated in air (up to 400 degrees C) and Vacuum (up to 800 degrees C) was confirmed by micro-Raman spectroscopy measurements. Studies on I lie accelerated aging tests suggested that the absorber coatings on Cu were stable in air up to 75 h at 300 C and the service lifetime of the multilayer absorber was predicted to be more than 25 years. Further, the activation energy for the degradation of the multilayer absorber heat treated for longer durations in air is of the order of 64 kJ/mol.
机译:使用脉冲溅射系统将光谱选择性的AlxOy / Al / AlxOy多层吸收剂涂层沉积在铜(Cu)和钼(Mo)基板上。使用非对称双极脉冲直流发生器在Ar + O-2和Ar等离子体中溅射Al靶,以沉积AlxOy / Al / AlxOy涂层。优化各个组成层的组成和厚度,以实现高的太阳吸收率(α= 0.950-0.970)和低的热发射率(ε= 0.05-0.08)。薄膜模式的X射线衍射数据显示AlxOy / Al / AlxOy涂层为非晶结构。 AlxOy / Al / AlxOy多层吸收剂的X射线光电子能谱数据表明,涂层中存在的AlxOy层是非化学计量的。多层吸收体的光学常数(n和k)由光谱椭偏数据确定。 Drude的自由电子模型用于生成Al薄膜的光学常数的理论色散,而Tauc-Lorentz模型用于建模介电AlxOy层的光学特性。为了研究AlxOy / Al / AlxOy涂层的热稳定性,对它们进行了不同温度和持续时间的热处理(在空气和真空中)。即使在高达400摄氏度的空气中热处理2小时后,沉积在Cu基片上的多层吸收剂也显示出0.901 / 0.06的高太阳选择性(α/ε)。在450摄氏度时,Cu基板上的太阳选择性显着降低(例如,α/ε= 0.790 / 0.07)。沉积在Mo基板上的涂层在真空中高达800摄氏度时具有热稳定性,太阳选择性为0.934 / 0.05。通过微拉曼光谱测量法证实了在空气(最高400摄氏度)和真空(最高800摄氏度)中热处理的吸收体涂层的结构稳定性。关于加速老化试验的研究表明,Cu上的吸收剂涂层在300°C的空气中最多可保持75h的稳定性,并且多层吸收剂的使用寿命预计将超过25年。此外,用于在空气中经较长时间热处理的多层吸收器的降解的活化能为64kJ / mol。

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