Adaptive solid-state luminescent phosphors
The absorbance or emission wavelength of composite materials comprising a transition metal doped shell disposed over a rare earth doped core and a functionalizable group on the surface of the transition metal doped shell can change upon subjection to a carboxylic acid. This method of changing the absorbance or emission wavelength of a composite material can be used to identify counterfeit currency using an ink comprising a composite material.
1. A composite material comprising:
a rare earth doped core;
a transition metal doped shell disposed over the core, wherein the transition metal doped shell comprises TiO 2 ; and
a functionalizable group on the surface of the transition metal doped shell.
2. The composite material of claim 1 , wherein the composite material forms a shape selected from the group consisting of a core-shell nanoparticle, a nanowire, and a nanorod.
3. The composite material of claim 1 , wherein the composite material is a core-shell nanoparticle.
4. The composite material of claim 1 , wherein the rare earth doped core comprises β-NaYF 4 .
5. The composite material of claim 1 , wherein the rare earth doped core comprises at least one rare earth selected from the group consisting of Er, Yb, Tb, Tm, and Ho.
6. The composite material of claim 1 , wherein the transition metal doped shell comprises at least one transition metal selected from the group consisting of V, Cr, Mn, Fe, Co, Ni, and Cu.
7. The composite material of claim 1 , wherein the transition metal doped shell comprises Ni.
8. The composite material of claim 1 , wherein the functionalizable group is a hydroxide group.
9. The composite material of claim 1 , wherein the transition metal doped shell further comprises Bi.
10. The composite material of claim 1 , wherein the rare earth doped core comprises YVO 4 .
11. An ink comprising a composite material wherein the composite material comprises:
a rare earth doped core;
a transition metal doped shell disposed over the core; and
a functionalizable group on the surface of the transition metal doped shell.
12. A QR code comprising the ink of claim 11 .