首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Thermal aging characteristics of CrN_xO_y solar selective absorber coating for flat plate solar thermal collector applications
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Thermal aging characteristics of CrN_xO_y solar selective absorber coating for flat plate solar thermal collector applications

机译:平板太阳能集热器应用的CrN_xO_y太阳能选择性吸收剂涂层的热老化特性

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摘要

A solar selective absorber coating of CrN_xO_y/SiO _2 was prepared on Cu (Si) substrate using DC reactive magnetron sputtering technique. The coating exhibits a high absorptivity (α) of 0.947 and a low emissivity (ε) of 0.05 at 80 °C. The spectral selectivity (α/ε) of the coating on Cu substrate is stable (0.930/0.073) even after heat-treatment at 278 °C in air for 300 h, but decreased (0.904/0.135) at 278 C for 600 h. The determinants to govern the thermal stability were investigated by micro-Raman spectroscopy, X-ray photoelectron spectroscopy (XPS) and Auger electron spectroscopy (AES) measurements, which reveal that the element diffusion whether throughout all the stacked layers or near the interface region, the chemical interactions adjacent to the interface, and the interface width broadening are the Achilles' heel for the solar thermal coatings to sustain high thermal stability.
机译:利用直流反应磁控溅射技术在Cu(Si)衬底上制备了CrN_xO_y / SiO _2的太阳能选择性吸收涂层。该涂层在80°C时具有0.947的高吸收率(α)和0.05的低发射率(ε)。即使在278°C的空气中进行300 h热处理后,Cu基体上涂层的光谱选择性(α/ε)仍稳定(0.930 / 0.073),而在278°C下600 h则降低(0.904 / 0.135)。通过显微拉曼光谱,X射线光电子能谱(XPS)和俄歇电子能谱(AES)测量研究了决定热稳定性的决定因素,这些结果揭示了元素扩散是遍及所有堆叠层还是靠近界面区域,界面附近的化学相互作用以及界面宽度的扩大是太阳能热涂层保持高热稳定性的致命弱点。

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