On the vibrational properties of transition metal doped ZnO: surface, defect, and bandgap engineering
Viviane M. A. Lage, Carlos Rodr\'iguez-Fern\'andez, Felipe S. Vieira,, Rafael T. da Silva, Maria In\^es B. Bernardi, Maur\'icio M de Lima Jr.,, Andr\'es Cantarero, Hugo B. de Carvalho

TL;DR
This study investigates how transition metal doping affects the vibrational, structural, and optical properties of ZnO, revealing surface and defect-related phonon behaviors and bandgap tuning effects.
Contribution
It provides new insights into the vibrational modes and surface phonons in TM-doped ZnO, linking doping concentration and surface effects to optical and vibrational properties.
Findings
Dopant ions are incorporated into the ZnO lattice.
Surface optical phonons are enhanced by TM doping.
Doping induces bandgap narrowing and surface-related vibrational modes.
Abstract
We present a comprehensive study on the structure and optical properties of Mn-and Co-doped ZnO samples prepared via solid-state reaction method with different dopant concentrations and atmospheres. The samples were structural and chemically characterized via X-ray diffraction, scanning electron microscopy, energy-dispersive X-ray spectroscopy, and X-ray excited photoelectron spectroscopy. The optical characterization was performed via Raman, photoluminescence, and diffuse photoreflectance spectroscopies. Emphasis was done on the studies of their vibrational properties. The structural data confirm the incorporation of Mn and Co ions into the wurtzite ZnO lattice. It is demonstrated that the usual observed additional bands in the Raman spectrum of transitional metal (TM) doped ZnO are related to structural damage, deriving from the doping process, and surface effects. The promoted…
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Taxonomy
TopicsZnO doping and properties
