Raman scattering in Me-doped ZnO nanorods (Me = Mn, Co, Cu and Ni) prepared by thermal diffusion
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PHAN, TheLong, VINCENT, Roger, CHERNS, David, NGHIA, Nguyen Xuan, URSACHI, Veaceslav. Raman scattering in Me-doped ZnO nanorods (Me = Mn, Co, Cu and Ni) prepared by thermal diffusion. In: Nanotechnology, 2008, vol. 19, p. 0. ISSN 0957-4484. DOI: https://doi.org/10.1088/0957-4484/19/47/475702
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Nanotechnology
Volumul 19 / 2008 / ISSN 0957-4484

Raman scattering in Me-doped ZnO nanorods (Me = Mn, Co, Cu and Ni) prepared by thermal diffusion

DOI:https://doi.org/10.1088/0957-4484/19/47/475702

Pag. 0-0

Phan TheLong1, Vincent Roger1, Cherns David1, Nghia Nguyen Xuan2, Ursachi Veaceslav3
 
1 University of Bristol,
2 Vietnam Academy of Science and Technology,
3 Institute of Applied Physics, Academy of Sciences of Moldova
 
 
Disponibil în IBN: 24 august 2023


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We have investigated normal and resonant Raman scattering in Me-doped ZnO nanorods (Me = Mn, Co, Cu and Ni) prepared by thermal diffusion. Experimental results show that the normal Raman spectra consist of the conventional modes associated with wurtzite ZnO and impurity-related additional modes. Under resonant conditions, only longitudinal optical (LO) phonon scattering and its overtones are observed. The number of LO phonon lines and their relative intensity depend on the doping element and level. For the nanorods doped with Cu and Ni, we have observed LO phonon overtones up to eleventh order. This situation does not happen for the Mn-doped nanorods, which show only five LO phonon modes. By co-doping Mn and Co into the ZnO host lattice, however, the LO phonon overtones up to eleventh order are observed again. The nature of this phenomenon is explained by means of the study of XRD, TEM and photoluminescence. 

Cuvinte-cheie
copper, Doping (additives), manganese, Manganese compounds, Nanorods, nickel, phonons, Raman scattering, scattering, Thermal diffusion, Thermal diffusion in liquids, zinc oxide, Zinc sulfide