IP Library Granted Patent US 9,404,036
Granted Patent B2
US 9,404,036 · App. 12/262,132 · Granted Aug 2, 2016

Alkali metal and alkali earth metal gadolinium halide scintillators

Inventors: Edith Bourret-Courchesne (Berkeley, CA); Stephen E. Derenzo (Pinole, CA); Shameka Parms (Winston-Salem, NC); Yetta D. Porter-Chapman (Pleasant Hill, CA); Latoria K. Wiggins (Chestertown, MD)
Assignee: The Regents of the University of California
C09K11/7773
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Quick Facts
Patent No.
US 9,404,036
App. No.
12/262,132
Granted
Aug 2, 2016
Kind
B2
Abstract

The present invention provides for a composition comprising an inorganic scintillator comprising a gadolinium halide, optionally cerium-doped, having the formula A n GdX m :Ce; wherein A is nothing, an alkali metal, such as Li or Na, or an alkali earth metal, such as Ba; X is F, Br, Cl, or I; n is an integer from 1 to 2; m is an integer from 4 to 7; and the molar percent of cerium is 0% to 100%. The gadolinium halides or alkali earth metal gadolinium halides are scintillators and produce a bright luminescence upon irradiation by a suitable radiation.

Claims (12)

1. An inorganic scintillator comprising a gadolinium halide cerium-doped, having the formula BaGdCl 5 :Ce; wherein the molar percent of cerium is 0.50% to 10.0%; and the inorganic scintillator has a size of at least 1 mm and when the inorganic scintillator is excited by X-ray radiation has an emission intensity of at least 21,600 ph/MeV.

2. An inorganic scintillator comprising a gadolinium halide having the formula LiGdCl 4 :Ce; wherein the molar percent of cerium is more than 0% to 100%, and when the inorganic scintillator is excited by X-ray radiation has an emission intensity of at least 36,000 ph/MeV.

3. A method for producing the composition comprising an inorganic scintillator of claim 1 comprising:

a. providing a mixture of halide salts useful for producing the inorganic scintillator,

b. heating the mixture such that the halide salts or solids start to react, and

c. cooling the mixture of the formed composition to room temperature such that the composition is formed.

4. The method of claim 3 , wherein the mixture of halide salts consisting essentially of solid barium chloride, and solid gadolinium halide, and solid cerium halide, wherein (i) the mixture has a stoichiometry of about 1 barium atoms: about 1 gadolinium atom: about 5 halogen atoms, (ii) the halogen is CI and (iii) the molar percent of cerium is from more than 0% to 100%.

5. A device comprising a composition comprising the inorganic scintillator of claim 1 wherein the inorganic scintillator is capable of detecting ionizing radiation.

6. A device comprising a composition comprising the inorganic scintillator of claim 2 wherein the inorganic scintillator is capable of detecting ionizing radiation.

7. The inorganic scintillator of claim 1 , wherein the molar percent of cerium is from 1% to 10%.

8. The inorganic scintillator of claim 2 , wherein the molar percent of cerium is from more than 0% to 50%.

9. The inorganic scintillator of claim 2 , wherein the inorganic scintillator has a size of at least 1 mm.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jan 9, 2017
From: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 041328/0443 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2009
From: BOURRET-COURCHESNE, EDITH; DERENZO, STEPHEN E.; PORTER-CHAPMAN, YETTA D.; PARMS, SHAMEKA; WIGGINS, LATORIA K.
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 022374/0289 →
Continuity (3)
Provisional Application 60983847 · Oct 30, 2007
Provisional Application 61058534 · Jun 3, 2008
Related Publication 20090166585A1 · Jul 2, 2009