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Enhanced Photocatalytic Degradation of Rutile TiO2 by Analysis of the Surface Potential and Fluorescence

机译:通过表面电位和荧光分析增强金红石型TiO2的光催化降解

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摘要

Rare earth (RE) (La3+, Ce4+, Pr3+, Nd3+, Sm3+, Eu3+, Gd3+, Tb3+, Dy3+, Er3+, Tm3+ and Y3+) doped rutile phase TiO2 were prepared by low temperature one step synthesis and used as photocatalyst. The RE doped rutile phase TiO2 were characterized by X-ray diffraction (XRD), Particle Size, zeta potential, UV-visible spectroscopy, fluorescence spectrum. The results show that the RE have been doped into the rutile TiO2 crystal lattice successfully. It was analyzed that main crystal phase was rutile phase TiO2 in XRD. It shows that we can get micrometer-size rutile phase TiO2 and RE doped TiO2 by one-step method. Particle Size indicate that we can get micrometer-size rutile TiO2 and RE doped rutile TiO2 by one-step method. The results of zeta potential of RE doped rutile TiO2 explain RE how to change the photoelectric activity by increase the lattice defect. The results of FS show that RE how to influence on the electron transition and the electron trap of rutile TiO2. These results indicate that RE can enhanced photocatalytic degradation of rutile TiO2.
机译:通过低温一步合成法制备了掺杂金红石相TiO2的稀土(RE)(La3 +,Ce4 +,Pr3 +,Nd3 +,Sm3 +,Eu3 +,Gd3 +,Tb3 +,Dy3 +,Er3 +,Tm3 +和Y3 +)并用作光催化剂。通过X射线衍射(XRD),粒度,Zeta电位,紫外可见光谱,荧光光谱对稀土掺杂的金红石相TiO2进行了表征。结果表明,稀土元素已经成功地掺杂到金红石型TiO2晶格中。分析了XRD中主晶相为金红石相TiO2。结果表明,通过一步法可以得到微米级的金红石相TiO2和RE掺杂的TiO2。粒度表明,通过一步法可以得到微米级的金红石型TiO2和掺RE的金红石型TiO2。稀土掺杂金红石型TiO2的ζ电位结果说明稀土如何通过增加晶格缺陷来改变光电活性。 FS的结果表明,RE如何影响金红石型TiO2的电子跃迁和电子陷阱。这些结果表明,RE可以增强金红石型TiO2的光催化降解。

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