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首页> 外文期刊>CERAMICS INTERNATIONAL >Surface structural and solar absorptance features of nitrate-based copper-cobalt oxides composite coatings: Experimental studies and molecular dynamic simulation
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Surface structural and solar absorptance features of nitrate-based copper-cobalt oxides composite coatings: Experimental studies and molecular dynamic simulation

机译:基于硝酸盐的铜 - 钴氧化物复合涂料的表面结构和太阳镜吸收特征:实验研究和分子动态模拟

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The copper and cobalt oxides composites coatings on aluminum substrates have been successfully synthesized via sol-gel method using nitrate-based sol precursors. The composites were characterized by X-ray Diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Field Emission Scanning Electron Microscopy (FESEM), Atomic Force Microscopy (AFM), and UV-Vis-NIR spectrophotometry. The sol-gel reactions were discussed and Molecular Dynamics (MD) simulation was integrated into the study to predict molecules assembly properties. The XRD analyses revealed that the CuO and the Co3O4 composites were formed after the annealing process with the average difference of the calculated lattice parameters compared to ICDDs was 1.17%. The surface electronic structure was mainly consisted of tetrahedral Cu(I), octahedral Cu(II), tetrahedral Co(U), octahedral Co(III) as well as surface, sub-surface and lattice oxygen O-. The XRD, XPS and MD simulation results showed that there was minimal (or possibly non-existing) indication of copper-cobalt mixed phase oxides formations. FESEM and AFM surveys revealed that the coating had a porous surface composed of interlinked nanoparticles in the range of similar to 10 to similar to 40 nm. UV-Vis-NIR reflectance spectra showed that the sol precursors concentration and the dip-drying cycle significantly influenced the absorptance value with optimum absorptance (alpha) of 88.7% exhibited by coating synthesized using sol concentration of 0.1 M and 10 dip-drying cycles. High absorptance value and simplicity in the synthesis process render the coatings to be very promising candidates for solar selective absorber (SSA) applications.
机译:使用硝酸盐基溶胶前体通过溶胶 - 凝胶法成功地合成了铝基衬底上的铜和钴氧化物复合材料。复合材料的特征在于X射线衍射(XRD),X射线光电子能谱(XPS),场发射扫描电子显微镜(FESEM),原子力显微镜(AFM)和UV-Vis-Nir分光光度法。讨论了溶胶 - 凝胶反应,并将分子动力学(MD)模拟整合到该研究中以预测分子组装性质。 XRD分析显示CuO和CO 3O4复合材料在退火过程中形成,与ICDD相比计算的晶格参数的平均差异为1.17%。表面电子结构主要由四面体Cu(I),八面体Cu(II),四面体Co(U),八面型Co(UII)以及表面,亚表面和晶格氧O-。 XRD,XPS和MD仿真结果表明,铜 - 钴混合相氧化物形成的最小(或可能是不存在的)指示。 FeSEM和AFM调查显示,涂层具有与相似的相互链接纳米颗粒组成的多孔表面,其与10至类似于40nm。 UV-Vis-Nir反射光谱表明,溶胶前体浓度和浸渍干燥循环在使用溶胶浓度为0.1M和10浸水循环的涂层中涂覆的88.7%的最佳吸收率(α)显着影响了88.7%的吸收值。合成过程中的高吸收值和简单性使涂层使涂层非常有希望用于太阳能选择性吸收器(SSA)应用。

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