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Synergistic Improvement in Coating with UV Aging Resistance and Anti-Corrosion via La-Doped CeO2 Powders

机译:通过La-Doped CeO2粉末涂覆紫外老化耐老化抗腐蚀的协同改善

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Benefitting from a suitable band gap, ceria is an excellent material for UV shielding. By solid solution doping and specific micromorphology, its band gap can be effectively controlled. In this paper, ceria doped with lanthanum via oxalate precipitation is combined with a high-temperature roasting process. The properties of the prepared samples are characterized by UV–Vis diffuse reflectance spectroscopy (DRS), Raman, XRD, FESEM and XPS. The absorption threshold of materials is clearly red-shifted in the ultraviolet band, which originates from the electron-phonon generation. To further reveal the mechanism, the density function theory calculation (DFT) is implemented to study the influence of lanthanum concentrations on ceria’s band gap. It is demonstrated that the band gap can even be narrowed to 2.97 eV by optimizing the sintering temperature and lanthanum-doped concentration. To investigate its improved anti-aging properties under ultraviolet rays, different amounts of 5% lanthanum-doped ceria is mixed with an Al-based coating and then coated on the Q235 steel. Combined with an ultraviolet light irradiation experiment and electrochemical test technology, the corrosion resistance of the modified coatings is evaluated. The coating with 20% La-doped ceria provides the best corrosion resistance performance.
机译:优于合适的带隙,Ceria是用于紫外线屏蔽的优质材料。通过固溶液掺杂和特异性微晶,可以有效地控制其带隙。本文通过草酸沉淀掺杂镧掺杂的二氧化铈与高温焙烧过程合并。制备样品的性质的特征在于UV-Vis弥漫性反射谱(DRS),拉曼,XRD,FESEM和XPS。材料的吸收阈值在紫外线带中清楚地换档,紫外线带源自电子 - 声子发电。为了进一步揭示机制,实施了密度函数理论计算(DFT)以研究镧浓度对Ceria频带隙的影响。证明带隙甚至可以通过优化烧结温度和镧掺杂浓度来缩小到2.97eV。为了研究其在紫外线下改善的抗衰老性能,将不同量的5%镧掺杂的二氧化铈与基于Al基涂层混合,然后涂覆在Q235钢上。结合紫外线照射实验和电化学测试技术,评价改性涂层的耐腐蚀性。具有20%La-Doped Ceria的涂层提供了最佳的耐腐蚀性性能。

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