IP Library Granted Patent US 9,428,690
Granted Patent B2
US 9,428,690 · App. 14/837,459 · Granted Aug 30, 2016

Yellow-green to yellow-emitting phosphors based on terbium-containing aluminates

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Quick Facts
Patent No.
US 9,428,690
App. No.
14/837,459
Granted
Aug 30, 2016
Kind
B2
Abstract

Yellow-green to yellow-emitting, lutetium aluminate-based terbium (Tb) containing phosphors for use in white LEDs, general lighting, and LED and backlighting displays are disclosed herein. The phosphor may further contain gadolinium (Gd). In one embodiment of the present invention, the phosphor comprises a cerium-activated, yellow-green to yellow-emitting lutetium aluminate-based phosphor having the formula (Lu 1-x A x ) 3 Al 5 O 12 :Ce wherein A is at least one of Gd and Tb and 0.1≦x≦1.0, wherein the phosphor is configured to emit light having a peak emission wavelength ranging from about 550 nm to about 565 nm, and wherein the phosphor contains at least some Tb.

Claims (31)

1. A cerium-activated, yellow-green to yellow-emitting lutetium aluminate-based phosphor having the formula (Lu 1-x A x ) 3 B z Al 5 O 12 C w :Ce and wherein:

A is at least one of Gd and Tb;

B is at least one of Mg, Sr, Ca, and Ba;

C is at least one of F, Cl, Br, and I;

0.001≦x≦1.0;

0<z≦0.5; and

2z>w≧2zp, wherein p is chosen from the group consisting of 0.50, 0.75, 0.90 and 0.95.

2. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein 2z>w≧z.

3. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein 2z>w≧1.5z.

4. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein 2z>w≧1.8z.

5. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein 2z>w≧1.9z.

6. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein C is contained within the crystal substitutionally.

7. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein C is contained within the crystal interstitially.

8. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein

A is Tb.

9. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein:

B is at least one of Sr and Ba; and

C is F.

10. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein the yellow-green to yellow-emitting lutetium aluminate-based phosphor is configured to absorb excitation radiation having a wavelength ranging from about 380 nm to about 480 nm, and to emit light having a peak emission wavelength ranging from about 550 nm to about 565 nm.

11. A white light illumination system comprising:

an excitation source with emission wavelength within a range of 200 nm to 480 nm;

at least one of a red-emitting phosphor or a green-emitting phosphor; and

a cerium-activated, yellow-green to yellow-emitting lutetium aluminate-based phosphor comprising terbium of claim 1 , wherein the phosphor is configured to emit light having a peak emission wavelength ranging from about 550 nm to about 565 nm.

12. The white light illumination system of claim 11 , wherein said cerium-activated, yellow-green to yellow-emitting lutetium aluminate-based phosphor is configured to absorb excitation radiation having a wavelength ranging from about 380 nm to about 480 nm.

13. The white light illumination system of claim 11 , wherein the red-emitting phosphor has an emission wavelength within a range of 600 nm to 660 nm.

14. The white light illumination system of claim 11 , wherein the green-emitting phosphor has an emission wavelength within a range of 500 nm to 545 nm.

15. The white light illumination system of claim 11 , wherein the red-emitting phosphor is a nitride.

16. The white light illumination system of claim 15 , wherein the nitride is at least one of (Ca,Sr)AlSiN 3 :Eu 2+ , (Ca,Sr) 2 N 5 N 8 :Eu 2+ , and (Ca,Sr)AlSi 4 N 7 :Eu 2+ .

17. The white light illumination system of claim 11 , wherein the green-emitting phosphor is a silicate.

18. The white light illumination system of claim 17 , wherein the silicate has the formula (Sr,Ba,Mg) 2 SiO 4 :Eu 2+ .

19. The yellow-green to yellow-emitting lutetium aluminate-based phosphor of claim 1 , wherein C is contained within the crystal at grain boundaries.

Assignments (2)
RELEASE OF SECURITY INTEREST Recorded Apr 14, 2022
From: EAST WEST BANK
To: INTEMATIX HONG KONG CO. LIMITED; INTEMATIX CORPORATION
Reel/Frame 059910/0304 →
SECURITY INTEREST Recorded Oct 27, 2015
From: INTEMATIX HONG KONG CO. LIMITED; INTEMATIX CORPORATION
To: EAST WEST BANK
Reel/Frame 036967/0623 →