Using the solid-state technique that involves great temperature, we created multiple phosphors Sr4La(PO4)3O:Ce3+, Tb3+, Mn2+ (abbreviated as SLPO:Ce, Tb, Mn). We then examined their heat consistency, luminescence, as well as energy shift from Ce3+ to Tb3+ and Mn2+. We can acquire a considerable boost for the faint emission in green generated by Tb3+ as well as the emission in red generated by Mn2+ via adding the sensitizer Ce3+ ions. Through modifying the proportion between Ce3+ and Tb3+ along with the proportion between Ce3+ and Mn2+, it is possible to adjust the chroma of emission. We acquired white illumination which had color coordinates determined as (0.3326, 0.3298) for the testing phosphor Sr4La(PO4)3O: 0.12Ce3+, 0.3Mn2+. Such result...
Researchers propose the phosphors emit many colors SrMg2La2W2O12:Tb3+, Sm3+, Tm3+ (SMLLW:RE3+) (RE3+...
A series of single-component Sr3Lu(PO4)(3):Eu2+,Mn2+ phosphors were successfully synthesized by soli...
A new, highly efficient deep red-emitting phosphor Ca14Al10Zn6O35:Mn4+ was developed as a component ...
A high heat solid-state technique was used to produce a set of phosphor Sr4La(PO4)3O:Ce3+,Tb3+,Mn2+ ...
We apply the high-heat solid-state technique to create a sequence of phosphors Sr4La(PO4)3O: Ce3+ , ...
Using a high temperature solid-state technique, various phosphors Sr4La(PO4)3O:Ce3+, Tb3+, Mn2+ (SLP...
We used the ceramic approach to synthesize a sequence of Sr4La(PO4)3O:Ce3+,Tb3+, Mn2+ within our stu...
This study proposed the TRP, a remote phosphor structure that has 3 phosphor layers, to ehance the c...
In this study, the use of triple-sheet phosphor arrangement (TRP) in performing significant improvem...
The traditional solid-state technique was used to create LaBSiO5 phosphors doped with Ce3+ and Tb3+ ...
The traditional solid-state technique was used to create LaBSiO5 phosphors doped with Ce3+ and Tb3+ ...
A series of single-phase Ca9Sc(PO4)(7):Eu2+, Tb3+, Mn2+ phosphors for UV excitations were synthesize...
Ca8MgLu(PO4)(7):Ce3+,Tb3+,Mn2+ (abbreviated as CMLP:Ce3+,Tb3+,Mn2+) phosphors were synthesized by a ...
A novel tunable full-color-emitting Sr3Gd(PO4)(3):Eu2+,Mn2+ phosphor system was successfully develop...
This study proposes a dual-layer remote phosphor structure, comprised of a green or a red phosphor l...
Researchers propose the phosphors emit many colors SrMg2La2W2O12:Tb3+, Sm3+, Tm3+ (SMLLW:RE3+) (RE3+...
A series of single-component Sr3Lu(PO4)(3):Eu2+,Mn2+ phosphors were successfully synthesized by soli...
A new, highly efficient deep red-emitting phosphor Ca14Al10Zn6O35:Mn4+ was developed as a component ...
A high heat solid-state technique was used to produce a set of phosphor Sr4La(PO4)3O:Ce3+,Tb3+,Mn2+ ...
We apply the high-heat solid-state technique to create a sequence of phosphors Sr4La(PO4)3O: Ce3+ , ...
Using a high temperature solid-state technique, various phosphors Sr4La(PO4)3O:Ce3+, Tb3+, Mn2+ (SLP...
We used the ceramic approach to synthesize a sequence of Sr4La(PO4)3O:Ce3+,Tb3+, Mn2+ within our stu...
This study proposed the TRP, a remote phosphor structure that has 3 phosphor layers, to ehance the c...
In this study, the use of triple-sheet phosphor arrangement (TRP) in performing significant improvem...
The traditional solid-state technique was used to create LaBSiO5 phosphors doped with Ce3+ and Tb3+ ...
The traditional solid-state technique was used to create LaBSiO5 phosphors doped with Ce3+ and Tb3+ ...
A series of single-phase Ca9Sc(PO4)(7):Eu2+, Tb3+, Mn2+ phosphors for UV excitations were synthesize...
Ca8MgLu(PO4)(7):Ce3+,Tb3+,Mn2+ (abbreviated as CMLP:Ce3+,Tb3+,Mn2+) phosphors were synthesized by a ...
A novel tunable full-color-emitting Sr3Gd(PO4)(3):Eu2+,Mn2+ phosphor system was successfully develop...
This study proposes a dual-layer remote phosphor structure, comprised of a green or a red phosphor l...
Researchers propose the phosphors emit many colors SrMg2La2W2O12:Tb3+, Sm3+, Tm3+ (SMLLW:RE3+) (RE3+...
A series of single-component Sr3Lu(PO4)(3):Eu2+,Mn2+ phosphors were successfully synthesized by soli...
A new, highly efficient deep red-emitting phosphor Ca14Al10Zn6O35:Mn4+ was developed as a component ...