Journal of Applied Physics · 2009 · 67 citations · 18 references
Optical MaterialsEngineeringOptoelectronic DevicesSemiconductor NanostructuresSemiconductorsIi-vi SemiconductorIon ImplantationOptical PropertiesStructural DisorderThin Film ProcessingMaterials SciencePhotoluminescenceCrystalline DefectsNanotechnologyOptoelectronic MaterialsSemiconductor MaterialApplied PhysicsThin FilmsMn-ion ImplantationMn2+ IonsSolar Cell Materials
We report on structural and optical properties of Mn-doped CdS thin films prepared by 190 keV Mn-ion implantation at different temperatures. Mn-ion implantation in the fluence range of 1×1013–1×1016 ions cm−2 does not lead to the formation of any secondary phase. However, it induces structural disorder, causing a decrease in the optical band gap. This is addressed on the basis of band tailing due to creation of localized energy states and Urbach energy calculations. Mn-doped samples exhibit a new band in their photoluminescence spectra at 2.22 eV, which originates from the d-d (T41→A61) transition of tetrahedrally coordinated Mn2+ ions.
18