IP Library Granted Patent US 10,550,321
Granted Patent B2
US 10,550,321 · App. 15/129,188 · Granted Feb 4, 2020

Phosphor and use thereof

Inventors: Masaaki Inamura (Ageo, JP); Haruka Shimizu (Shimonoseki, JP); Takayoshi Mori (Ageo, JP); Masanori Sato (Ageo, JP); Jun-ichi Itoh (Ageo, JP)
Assignee: Mitsui Mining & Smelting Co., Ltd.
C09K11/025C09K11/7718C09K11/7721C09K11/7731C09K11/7786H01L31/055H01L33/502H01L33/501Y02E10/52
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Quick Facts
Patent No.
US 10,550,321
App. No.
15/129,188
Granted
Feb 4, 2020
Kind
B2
Abstract

Proposed is a phosphor capable of effectively inhibiting the occurrence of adverse influence of a sulfur-based gas while improving water resistance of the phosphor and effectively inhibiting the corrosion of a metallic member. A phosphor is proposed, which includes particles or a layer provided on the surface of a sulfur-containing phosphor, which contains sulfur in a host material, and containing a crystalline metal borate containing an IIA-Group element, boron, and oxygen.

Claims (27)

1. A phosphor comprising a configuration in which particles containing a metal borate having crystallinity, also referred to as “crystalline metal borate”, that contains an IIA-Group element, boron, and oxygen, are on the surface of a sulfur-containing phosphor containing sulfur in a host material,

wherein a diffraction peak derived from the crystalline metal borate in a diffraction angle-diffraction intensity chart according to a general principle of powder X-ray diffraction analysis JIS K 0131-1996 is recognized in the crystalline metal borate, and

wherein the crystalline metal borate is contained in an amount of 0.005 parts by mass or more and 1 part by mass or less with respect to 1 part by mass of the sulfur containing phosphor,

wherein the crystalline metal borate is a compound represented by BaxByOz, wherein x is 1 to 3, y is 2 to 4, and z is 4 to 7.

2. A phosphor comprising a layer containing the crystalline metal borate according to claim 1 on the surface of a sulfur-containing phosphor containing sulfur in a host material.

3. The phosphor according to claim 1 , further comprising a glass coating layer containing a glass composition, on the surface of the sulfur-containing phosphor containing sulfur in a host material.

4. The phosphor according to claim 1 , further comprising particles or a layer containing a ZnO compound, on the surface of the sulfur-containing phosphor containing sulfur in a host material.

5. A light-emitting device comprising:

a solid luminescent device;

a metallic member reacting with a sulfur-based gas; and

a phosphor-containing layer, wherein

the phosphor-containing layer is configured to contain the phosphor according to claim 1 in a resin.

6. A light-emitting device comprising:

a solid luminescent device;

a metallic member reacting with a sulfur-based gas; and

a phosphor-containing layer, wherein

the phosphor-containing layer has a configuration in which the phosphor according to claim 1 and a ZnO compound are scattered in a resin.

7. A phosphor molded body comprising a configuration in which a luminescent layer containing the phosphor according to claim 1 is disposed in a sealing layer formed from a transparent resin composition or a glass composition.

8. A solar power generation apparatus comprising:

the phosphor according to claim 1 receiving at least light including light in an ultraviolet range or light in a near-ultraviolet range of sunlight and emitting light in a visible light range; and

a solar cell receiving the light in a visible light range emitted by the phosphor and converting the light in a visible light range into an electrical signal.

9. The phosphor according to claim 1 , wherein the crystalline metal borate is in contact with the surface of the sulfur-containing phosphor containing sulfur in a host material.

10. The phosphor according to claim 1 , wherein a glass coating layer containing a glass composition is present on the surface of the sulfur-containing phosphor containing sulfur in a host material, and the crystalline metal borate is present on the surface of the glass coating layer.

11. The phosphor according to claim 1 , wherein particles or a layer containing a ZnO compound is present on the surface of the sulfur-containing phosphor containing sulfur in a host material, and the crystalline metal borate is present on an outside of the particles or the layer containing the ZnO compound.

12. The phosphor according to claim 9 , wherein a layer containing the crystalline metal borate is present on the surface of the sulfur-containing phosphor containing sulfur in a host material.

13. The phosphor according to claim 1 , wherein the particles containing the crystalline metal borate have an average particle diameter of 1 nm or more and 10 μm or less as observed by SEM.

14. The phosphor according to claim 1 , wherein a layer containing the crystalline metal borate is directly on the surface of the sulfur-containing phosphor containing sulfur in the host material.

Assignments (2)
CHANGE OF NAME Recorded Mar 31, 2026
From: MITSUI MINING AND SMELTING COMPANY, LIMITED
To: MITSUI KINZOKU COMPANY, LIMITED
Reel/Frame 075357/0342 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2016
From: INAMURA, MASAAKI; SHIMIZU, HARUKA; MORI, TAKAYOSHI; SATO, MASANORI; ITOH, JUN-ICHI
To: MITSUI MINING & SMELTING CO., LTD.
Reel/Frame 039857/0025 →
Priority Claims (1)
JP 2014-065862 · Mar 27, 2014 · national
Continuity (1)
Related Publication 20170101579A1 · Apr 13, 2017