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Solar selective black cobalt: preparation, structure, and thermal stability

机译:太阳能选择性黑钴:制备,结构和热稳定性

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In the quest for an electroplated selective black coating stable to 500 °C in air, black cobalts have been prepared by three techniques to yield (a) plated cobalt sulphides, (b) plated cobalt oxide‐hydroxide, and (c) cobalt oxide prepared by thermal oxidation of electropolated cobalt metal. The optical properties of the various coatings are analyzed before and after exposure to air for extended periods of time at temperatures in the 300 °–500 °C range. The sulfide black cobalt is not acceptable as a high‐temperature selective absorber due to severe thermal degradation. The plated oxide is a good selective absorber to about 400 °C, and the thermally oxidized black to a slightly higher temperature, but degrades at 500 °C. Structure studies via scanning electron microscopy (SEM), Auger electron spectroscopy (AES), and x‐ray photoemission spectroscopy (XPS) are reported which yield a full account of the coating chemistry before and after heating. The studies reveal that the high solar absorptance of the acceptable black cobalt coatings is due to a continuation of a porous outer layer grading into nondense oxides of coba either CoO or Co3O4, depending on the film. Absorption is intrinsic but not due to metal particles as in black chrome. A limited amount of optical degradation occurs upon heating the oxide black cobalt in air due to oxidation of hydroxide. However, the major degradation problem is shown to be substrate oxidation in contrast to black chrome where film oxidation is the principal problem.
机译:为了寻求在空气中可稳定至500 C的电镀选择性黑色涂层,已通过三种技术制备了黑色钴,以产生(a)电镀的硫化钴,(b)氧化氢氧化钴和(c)氧化钴通过电氧化钴金属的热氧化。在300 –500 C的温度下长时间暴露于空气之前和之后,分析各种涂层的光学特性。硫化物黑钴由于严重的热降解作用而不能用作高温选择性吸收剂。电镀的氧化物在约400 C时是很好的选择性吸收剂,而热氧化后的黑色则在稍高的温度下吸收,但在500 C时会降解。据报道,通过扫描电子显微镜(SEM),俄歇电子能谱(AES)和X射线光电子能谱(XPS)进行结构研究,可以全面了解加热前后的涂层化学性质。研究表明,可接受的黑钴涂层的高吸光度是由于多孔外层的连续性逐渐变成了钴的非致密氧化物。 CoO或Co3O4,具体取决于薄膜。吸收是固有的,但不是由于黑色铬中的金属颗粒。由于氢氧化物的氧化,在空气中加热氧化黑钴时会发生有限量的光学降解。然而,与黑铬相反,主要的降解问题显示为基材氧化,而黑铬则是主要的膜氧化问题。

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    《Journal of Applied Physics 》 |1980年第8期| P.4186-4196| 共11页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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