Device for generating UVC radiation
A device for generating ultraviolet radiation by an excimer discharge includes at least partly UV-transparent discharge vessel whose discharge space is filled with a gas filling. The device further includes electrodes for triggering and maintaining an excimer discharge in the discharge space, and a luminescent material that contains a phosphor comprising a host lattice of general formula (Y 1-x-y-z ,Lu x ,Sc y ,A z )PO 4 wherein 0≦x<1 and 0<y≦1 and 0≦z<0.05, where A is an activator selected from the group of bismuth, praseodymium and neodymium.
1. A device for generating ultraviolet radiation by an excimer discharge, the device comprising:
at least partly UV-transparent discharge vessel having a discharge space filled with a gas filling,
electrodes for triggering and maintaining an excimer discharge in the discharge space, and
a coating that contains a phosphor comprising a host lattice of general formula (Y 1-x-y-z ,Lu x ,Sc y ,A z )PO 4 wherein 0≦x<1 and 0<y≦1 and 0<z<0.05, and A is an activator selected from the group of bismuth, praseodymium and neodymium.
2. The device for generating ultraviolet radiation as claimed in claim 1 , wherein the phosphor contains the activator in an amount of 0.01 to 10 mol %.
3. The device for generating ultraviolet radiation as claimed in claim 1 , wherein the phosphor has a particle size 1 μm<d 50 <6 μm.
4. The device for generating ultraviolet radiation as claimed in claim 1 , wherein the luminescent material further comprises a phosphor to be selected from the group of YPO 4 :Nd, LaPO 4 :Pr, (Ca,Mg)SO 4 :Pb, YBO 3 :Pr, Y 2 SiO 5 :Pr, Y 2 Si 2 O 7 :Pr, SrLi 2 SiO 4 :Pr,Na, and CaLi 2 SiO 4 :Pr.
5. The device for generating ultraviolet radiation as claimed in claim 1 , wherein the phosphor comprises a coating that contains an oxide selected from the group MgO, SiO 2 and Al 2 O 3 .
6. The device for generating ultraviolet radiation as claimed in claim 1 , wherein the gas filling contains a gas selected from the group xenon, krypton, argon, neon and helium.
7. The device for generating ultraviolet radiation as claimed in claim 1 , wherein the gas filling contains xenon.
8. The device for generating ultraviolet radiation as claimed in claim 1 , wherein the electrodes are composed of a metal or alloy that reflects UV-C light.
9. The device for generating ultraviolet radiation as claimed in claim 1 , wherein part of the discharge vessel is provided with a coating that acts as a reflector of VUV and/or UV-C light.
10. A phosphor comprising a host lattice of general formula (Y 1-x-y-z , Lu x ,Sc y ,A z )PO 4 wherein 0≦x<1 and 0<y≦1 and 0<z<0.05, and A is an activator selected from the group of bismuth, praseodymium and neodymium.
11. The phosphor according to claim 10 , further comprising an anion, selected from the group of arsenate and vanadate.
12. The device of claim 1 , further comprising an anion comprising arsenate.
13. The device of claim 1 , wherein the phosphor comprises (Y 0.945 SC 0.05 )PO 4 :Bi 0.005 .
14. The device of claim 1 , wherein the phosphor comprises (Y 0.795 SC 0.2 )PO 4 :Bi 0.005 .
15. The phosphor of claim 10 , further comprising an anion comprising arsenate.
16. The phosphor of claim 10 , wherein the phosphor comprises (Y 0.945 SC 0.05 )PO 4 :Bi 0.005 .
17. The phosphor of claim 10 , wherein the phosphor comprises (Y 0.795 SC 0.2 )PO 4:Bi 0.005 .