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首页> 外文期刊>Applied Surface Science >Solar absorptance of copper-cobalt oxide thin film coatings with nano-size, grain-like morphology: Optimization and synchrotron radiation XPS studies
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Solar absorptance of copper-cobalt oxide thin film coatings with nano-size, grain-like morphology: Optimization and synchrotron radiation XPS studies

机译:具有纳米晶粒状形态的铜-钴氧化物薄膜涂层的日光吸收:优化和同步辐射XPS研究

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Copper-cobalt oxides thin films had been successfully coated on reflective aluminium substrates via a facile sol-gel dip-coating method for solar absorptance study. The optimum absorptance in the range of solar radiation is needed for further optimum design of this material for selective solar absorber application. Field emission scanning electron microscopy was used to characterize the surface morphology of the coating whereby nano-size, grain-like morphology was observed. Synchrotron radiation X-ray photo-electron spectroscopy was employed to analyze the electronic structure of the coated surface showing that the (i) oxygen consisted of lattice, surface and subsurface oxygen, (ii) copper consisted of octahedral and tetrahedral Cu~+, as well as octahedral and paramagnetic Cu~(2+) oxidation states, and (iii) cobalt consisted of tetrahedral and paramagnetic Co(II), octahedral Co(III) as well as mixed Co(II,III) oxidation states. In order to optimize the solar absorptance of the coatings, relevant parameters such as concentrations of cobalt and copper, copper/cobalt concentration ratios and dip-speed were investigated. The optimal coating with α = 83.4% was produced using 0.25 M copper acetate and 0.25 M cobalt chloride (Cu/Co ratio = 1) with dip-speed 120 mm/min (four cycles). The operational simplicity of the dip-coating system indicated that it could be extended for coating of other mixed metal oxides as well.
机译:铜-钴氧化物薄膜已通过一种方便的溶胶-凝胶浸涂法成功地涂覆在反射铝基板上,用于太阳吸收率研究。为了针对选择性太阳能吸收器应用进一步优化设计该材料,需要在太阳辐射范围内具有最佳吸收率。场发射扫描电子显微镜用于表征涂层的表面形态,从而观察到纳米尺寸的颗粒状形态。用同步辐射X射线光电子能谱分析涂层表面的电子结构,结果表明:(i)氧由晶格,表面和亚表面氧组成,(ii)铜由八面体和四面体Cu〜+组成,以及八面体和顺磁性的Cu〜(2+)氧化态,以及(iii)钴由四面体和顺磁性的Co(II),八面体的Co(III)以及混合的Co(II,III)氧化态组成。为了优化涂层的日光吸收率,研究了相关参数,例如钴和铜的浓度,铜/钴的浓度比和浸入速度。使用0.25 M的醋酸铜和0.25 M的氯化钴(Cu / Co比= 1),浸入速度为120 mm / min(四个循环),可生产出最佳的α= 83.4%涂层。浸涂系统的操作简便性表明它也可以扩展到其他混合金属氧化物的涂层。

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