掺杂钴的MoO3纳米膜的一些物理性质及其对紫外照射下亚甲基蓝溶液降解的影响

N. Benameur, A. Boukhachem, M. Ghamnia, M. A. Chakhoum, M. A. Dahamni, C. Fauquet
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引用次数: 2

摘要

摘要/ abstract摘要:采用喷雾热解法在玻璃基板上合成了原始和掺杂钴(Co)的MoO3纳米膜。以10 - 2ml -1四水钼酸铵[(NH4)6Mo7O24,4H2O]为溶剂,在蒸馏水中制备纳米级原始MoO3薄膜。在原始溶液中加入六水氯化钴(Cl2CoH12O6),得到0.5、0.75和1%共掺杂。用x射线衍射和原子力显微镜研究了膜的结构和形貌。α-MoO3的正交结构相有两个明显的(020)和(040)峰。原子力显微镜观察表明,微板与表面平行,粗糙度在33 ~ 54 nm之间。通过反射率、透光率和光致发光测量来研究其光学性能。从这些测量结果推导出了光学带隙、厄巴赫能和折射率。蓝色和绿色畴的带间跃迁揭示了氧空位的存在。共掺杂MoO3纳米膜表现出铁磁性。利用紫外可见分光光度计对Co-MoO3纳米膜存在下的亚甲基蓝水溶液进行了光催化降解。随着紫外照射时间的增加,记录到的660 nm处的吸收峰强度减弱,初始溶液的颜色急剧下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Some Physical Properties of Cobalt Doped MoO3 Nanofilms and Their Effects on the Degradation of the Methylene Blue Solution under UV Illumination
Abstract—Pristine and Cobalt (Co)-doped MoO3 nanofilms were synthesized on glass substrates using the spray pyrolysis method. The nanometric pristine MoO3 films were prepared from the 10 -2 M.L -1 solution of ammonium molybdate tetrahydrate [(NH4)6Mo7O24,4H2O] in distilled water. Co-doping at 0.5, 0.75 and 1% was obtained by adding cobalt (II) chloride hexahydrate (Cl2CoH12O6) in the pristine solution. The structure and the morphology of the films were investigated by X-ray diffraction and atomic force microscopy. Two pronounced (020) and (040) peaks corresponding to the orthorhombic structure phase of α-MoO3 were detected. The AFM observations showed the formation of micro-plates parallel to the surface plane with a roughness ranging from 33 nm to 54 nm. Optical properties were investigated through reflectance, transmittance and photoluminescence measurements. The optical band gap, the Urbach energy and the refractive index were deduced from these measurements. The presence of oxygen vacancies were revealed from the interband transitions in the blue and green domains. Co-doped MoO3 nanofilms showed ferromagnetic behavior. Photocatalytic degradation of aqueous solution of methylene blue (MB) under UV irradiation in the presence of Co-MoO3 nanofilms has been carried out using UV-visible spectrometer by monitoring the absorption of the solution of MB. The intensity of the absorption peak recorded toward 660 nm was deceased with the increase of the UV-illumination time and the color of the initial MB solution was drastically degraded.
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