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首页> 外文期刊>CERAMICS INTERNATIONAL >Multifunctional properties of Zn0.9Mn0.05M0.05O (M = Al, Bi, Sr, Ag) nanocrystals-structural and optical study: Enhance sunlight driven photocatalytic activity
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Multifunctional properties of Zn0.9Mn0.05M0.05O (M = Al, Bi, Sr, Ag) nanocrystals-structural and optical study: Enhance sunlight driven photocatalytic activity

机译:Zn0.9Mn0.05M0.050(M = Al,Bi,Sr,Ag)多功能性质纳米晶体 - 结构和光学研究:增强阳光驱动光催化活性

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摘要

Novel Zn0.95Mn0.05O and Zn0.9Mn0.05M0.05O (M = Al, Bi, Sr, Ag) nanocrystals were prepared via the co-precipitation technique. The X-ray diffraction pattern confirmed the substitution of Mn, Al, Bi, Sr, and Ag dopants without altering the basic ZnO structure. The microstructural study was performed by employing the Scherrer plot, Williamson-Hall, and SSP methods. The energy bandgap calculated from UV-vis spectra using different methods observed red-shifted by co-doping. The other optical parameters were also studied and discussed in detail. The FTIR spectra confirmed the presence of Zn-O, and Zn-M-O vibrational modes. Raman spectra demonstrated the presence of ZnO phonon modes, and the Raman shift exhibited the structural defects induced by dopants. The PL spectra showed strong NBE and DLE in the UV and visible region due to extrinsic defects. The IV measurements exhibited the enhancement in the electrical conductivity of ZnO by co-doping. The photocatalytic activity was performed under direct sunlight for methyl orange and methylene blue dyes, and the enhanced degradation efficiency was achieved by co-doping. Furthermore, this article enhances the understanding of tuning the physical properties of ZnO by co-doping and introduces a new class of sunlight-driven photocatalysts.
机译:通过共沉淀技术制备新型Zn0.95Mn0.05O和Zn0.9mN0.05M和Zn0.9mN0.05M0.05O(M = Al,Bi,Sr,Ag)纳米晶体。 X射线衍射图案证实了Mn,Al,Bi,Sr和Ag掺杂剂的取代而不改变基本ZnO结构。通过使用Scherrer Plot,Williamson-Hall和SSP方法进行微观结构研究。使用不同方法计算的来自UV-Vis光谱的能量带隙观察到通过共掺杂的红移。还研究了其他光学参数并详细讨论。 FTIR光谱证实存在Zn-O和Zn-M-O振动模式。拉曼光谱证明存在ZnO声子模式,拉曼移位表现出掺杂剂诱导的结构缺陷。由于外在缺陷,PL光谱显示在UV和可见区域中的强NBE和DLE。 IV测量通过共掺杂表现出ZnO的电导率的增强。光催化活性在甲基橙和亚甲基蓝染料的直接阳光下进行,通过共掺杂实现增强的降解效率。此外,本文通过共掺杂增强了对调整ZnO的物理性质,并引入了一类新的阳光驱动的光催化剂。

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