CERAMIC MATERIAL FOR LEDS WITH REDUCED SCATTERING AND METHOD OF MAKING THE SAME
The invention relates to a ceramic luminescent material for LEDs with reduced scattering made by a uniaxial hot-pressing step.
1 . Ceramic converter material for light emitting devices, having a first scattering intensity SI(20) at 20° and a second scattering intensity S 1 (40) at 40°, wherein SI(20)/SI(40)>1.6.
2 . The ceramic converter material of claim 1 , having a third scattering intensity SI(30) at 30° and a fourth scattering intensity SI(60) at 60°, wherein SI(30)/SI(60)>1.9.
3 . The ceramic converter material of claim 1 , wherein the ceramic converter material shows a preferred orientation of its constituent crystallite grains
4 . The ceramic converter material of claim 1 , wherein the material consists essentially of crystallite grains with a d 50 of ≧5 μm.
5 . The ceramic converter material of claim 1 , wherein the material consists essentially of Sr 1-y-z M y Si 2 O 2 N 2 :Eu z , wherein M is selected out of the group consisting of Ca, Ba, Mg or mixtures thereof, and y is ≧0 to ≦1, and z is ≧0.0001 to ≦0.5
6 . A method of producing a material according to claim 1 , comprising uniaxially hot pressing of at least one precursor compound, the pressing step being performed at a temperature of ≧1200° C. to ≦1800° C. and a pressure of ≧50 MPa
7 - 10 . (canceled)