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Transition (Mn, Fe) and rare earth (La, Pr) metal doped ceria solid solutions for high performance photocatalysis: Effect of metal doping on catalytic activity

机译:过渡(Mn,Fe)和稀土(LA,PR)金属掺杂的高性能光催化的固体溶液:金属掺杂对催化活性的影响

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In this work, various transition and rare earth metal ions (M3+; M = Mn3+, Fe3+, La3+, and Pr3+) doped CeO2 solid solutions were prepared by a simple sol-gel method for the degradation of an organic dye, Rhodamine B (RhB) as a model pollutant. The as-prepared samples were thoroughly studied by various characterization techniques to understand the surface and optical properties. The XRD results suggested formation of solid solutions, and TEM studies confirmed the nanosized nature of the ceria particles. The Raman and XPS results revealed that the doping of metal ions enhanced the formation of Ce3+ ions associated with the oxygen vacancies. The doping of M3+ ions in the CeO2 lattice strongly influenced the band gap tuning of undoped CeO2 (3.01 eV) from the UV to Visible region (i.e., 2.45-2.90 eV). Photoluminescence studies suggested that doping of M3+ cations suppresses the recombination rate of photogenerated electron-hole pairs. The photocatalytic activity results indicated that the doped CeO2 samples exhibit substantially enhanced photocatalytic performance for the degradation of RhB compared to undoped CeO2. The better catalytic activity of doped CeO2 samples could be attributed to the presence of defects (Ce3+ ions and oxygen vacancies), which play a prominent role as trapping centres for excited electrons and inhibit the recombination process. The scavengers tests confirmed that the generation of highly reactive hydroxyl ((OH)-O-center dot) and super oxide (O-center dot(2) (-)) radicals are actively involved in the photodegradation process. This work rendered a new concept for rational design and development of doped CeO2-based materials as better photocatalysts.
机译:在这项工作中,通过简单的溶胶 - 凝胶法制备各种过渡和稀土金属离子(M3 +; M = Mn3 +,Fe3 +,La3 +,Fe3 +,La3 +,Fe3 +)固溶,用于降解有机染料,罗丹明B(RHB )作为模型污染物。通过各种表征技术彻底研究了制备的样品,以了解表面和光学性质。 XRD结果表明形成固体溶液,TEM研究证实了Ceria颗粒的纳米化性质。拉曼和XPS结果显示,金属离子的掺杂增强了与氧空位相关的CE3 +离子的形成。 CEO2晶格中M3 +离子的掺杂强烈影响未掺杂的CEO2(3.01eV)的带隙调整从UV到可见区域(即2.45-2.90eV)。光致发光研究表明,M3 +阳离子的掺杂抑制了光生电子孔对的重组率。光催化活性结果表明,与未掺杂的CeO2相比,掺杂的CeO2样品表现出显着增强的光催化性能,用于rhb的降解。掺杂CeO2样品的更好催化活性可归因于存在缺陷(CE3 +离子和氧空位),这起到激发电子的捕获中心和抑制重组过程的突出中心起着突出的作用。清除剂测试证实,产生高反应性羟基((OH)-O-中心点)和超氧化物(O中心点(2)(2)( - ))基团被主动参与光降解过程。这项工作使掺杂CEO2基材料的合理设计和开发成为更好的光催化剂的新概念。

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