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Structural characteristics and redox behaviors of Ce1-xCuxOy solid solutions

机译:structural characteristics and redox behaviors of Ce1-xCuxOy solid solutions

摘要

Nanosized Ce1-xCuxOy materials were prepared by complexation-combustion method. The structural characteristics and redox behaviors were investigated using X-ray diffraction (XRD), temperature programmed reduction (H-2-TPR), UV-Vis, and Raman spectroscopies. In XRD patterns, no evidence of CuO diffraction peaks are observed for the Ce1-xCuxOy samples calcinated at 650 degreesC for 5 h, until the Cu/(Ce + Cu) ratio is higher than 0.4. The stepwise decrease of the 2theta value of CeO2 in Ce1-xCuxOy with the increasing of Cu concentration suggests that the CU2+ ions incorporate into the CeO2 lattice to form Ce1-xCuxOy solid solutions for low Cu/(Ce + Cu) ratios (x less than or equal to 0.1). The CuO phase begins to segregate from the solid solutions with the further increasing of Cu/(Ce+Cu) ratio. The Raman mode at 1176 cm(-1) ascribed to the enhanced defects appears for CeO2 and the Ce0.9Cu0.1Oy solid solution. Compared with CeO2 alone, the Raman mode of cubic CeO2 shifts from 462 to 443 cm(-1) for the Ce0.9Cu0.1Oy solid solution. The H-2 consumption of the fresh Ce0.95Cu0.05Oy is 1.65 times higher than that needed to reduce CuO to Cu, and it increases to 2.4 after a reoxidation of the partially reduced Ce0.95Cu0.05Oy at 300 degreesC, which indicates that the CeO2 phase is also extensively reduced. Compared with the high Cu/(Ce+Cu) ratio sample Ce0.7Cu0.3Oy, the Ce0.9Cu0.1Oy solid solution shows high and stable redox property even after different reoxidation temperatures. When the reoxidation temperature exceeds 200 degreesC, the a peak (similar to170 degreesC) ascribed to the reduction of surface oxygen disappears, and the P peak (similar to190 degreesC) ascribed to the reduction of Cu2+ species and the partial reduction of bulk CeO2 shifts to higher temperatures with the H-2 consumption 1.16 times higher than that for fresh sample. The result demonstrates that the redox property of the CeO2 is Significantly improved by forming the Ce1-xCuxOy solid solutions.
机译:采用络合燃烧法制备了纳米Ce1-xCuxOy材料。使用X射线衍射(XRD),程序升温还原(H-2-TPR),UV-Vis和拉曼光谱学研究了结构特征和氧化还原行为。在X射线衍射图中,没有观察到在650℃下煅烧5h的Ce1-xCuxOy样品的CuO衍射峰的证据,直到Cu /(Ce + Cu)比高于0.4为止。随着Cu浓度的增加,Ce1-xCuxOy中CeO2的2θ值逐步降低,表明CU2 +离子掺入CeO2晶格中形成低Cu /(Ce + Cu)比(x小于或等于0.1)。随着Cu /(Ce + Cu)比的进一步增加,CuO相开始从固溶体中分离出来。对于CeO2和Ce0.9Cu0.1Oy固溶体,在1176 cm(-1)处归因于缺陷增强的拉曼模式。与单独的CeO2相比,Ce0.9Cu0.1Oy固溶体的立方CeO2的拉曼模式从462变为443 cm(-1)。新鲜的Ce0.95Cu0.05Oy的H-2消耗量是将CuO还原为Cu所需的H-2消耗量的1.65倍,并且在300℃下将部分还原的Ce0.95Cu0.05Oy进行再氧化后,其H-2消耗量增加到2.4。 CeO2相也被大量还原。与高Cu /(Ce + Cu)比样品Ce0.7Cu0.3Oy相比,即使在不同的再氧化温度下,Ce0.9Cu0.1Oy固溶体也显示出高而稳定的氧化还原性能。当再氧化温度超过200℃时,归因于表面氧还原的峰(约170℃)消失,归因于Cu 2+物种还原和部分CeO2的部分还原的P峰(约190℃)移向H-2消耗的温度比新鲜样品高1.16倍。结果表明,通过形成Ce1-xCuxOy固溶体,CeO2的氧化还原性能得到了显着改善。

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    Shan WJ; Shen WJ; Li C;

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  • 年度 2003
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