| Literature DB >> 25593561 |
Valentyna Nosenko1, Galyna Rudko1, Volodymyr Fediv2, Andrij Savchuk3, Evgenij Gule1, Igor Vorona1.
Abstract
The process of doping of CdS nanoparticles with Mn during colloidal synthesis is analyzed by EPR and optical studies. Analysis of EPR results demonstrated that Mn(2+) ions are successfully incorporated into the nanoparticles and occupy the crystal sites both in the bulk of a NP and near the surface of a NP. Optical absorption measurements revealed the retardation of absorption edge shift during the growth for Mn-doped CdS NPs as compared to the undoped CdS NPs. It was concluded that the presence of Mn in the solution leads to the inhibition of NPs growth.Entities:
Keywords: CdS; CdS:Mn; Colloidal nanoparticles; Doping; Polyvinyl alcohol; Radius size
Year: 2014 PMID: 25593561 PMCID: PMC4273699 DOI: 10.1186/1556-276X-9-683
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1The scheme of the synthesis: (a) – the synthesis of undoped CdS and (b) – the synthesis of CdS:Mn NPs in the water solution of polyvinyl alcohol.
Figure 2EPR spectrum of nanocomposite CdS:Mn/PVA and fitting components: 1 – experimental EPR spectrum of CdS:Mn/PVA NPs; 2 – Gaussian curve for the fitting of broad unstructured signal with peak to peak splitting 40 mT caused by dipole-dipole interaction of Mn ions; 3 – fitting component corresponding to the signal of individual Mn ions located in the position near the surface of a NP which is characterized by the hyperfine splitting of 9.5 mT; 4 – fitting component that corresponds to the signal of individual Mn ions located in the bulk of a NP that is characterized by the hyperfine splitting of 7 mT.
Figure 3Optical absorption: Spectral dependencies of the optical density of the colloidal solutions of CdS NPs (a) and CdS:Mn NPs (b) measured at five sequential stages of synthesis. The total concentrations of the precursors Cd2+ and S2- injected into the growth solution at these synthesis steps, are: 1 – 0.80 · 10-3 mole/dm3 and 0.39 · 10-3 mole/dm3; 2 – 0.96 · 10-3 mole/dm3 and 0.77 · 10-3 mole/dm3; 3 – 1.2 · 10-3 mole/dm3 and 1.15 · 10-3 mole/dm3; 4 – 1.67 · 10-3 mole/dm3 and 1.72 · 10-3 mole/dm3; 5 – 2.59 · 10-3 mole/dm3 and 2.73 · 10-3 mole/dm3.
Figure 4Dependencies of the radii of CdS and CdS:Mn NPs on the precursors concentrations: solid squares – dependency of the radii of CdS NPs on the precursors concentrations; light triangles – dependency of the radii of CdS:Mn NPs on the precursors concentrations. Lines are the guides for the eye.