IP Library Granted Patent US 11,627,691
Granted Patent B2
US 11,627,691 · App. 15/999,846 · Granted Apr 11, 2023

Zintl compounds with high thermoelectric performance and methods of manufacture thereof

Inventors: Zhifeng Ren (Pearland, TX); Jing Shuai (Houston, TX)
Assignee: UNIVERSITY OF HOUSTON SYSTEM
H10N10/852B22F1/054B22F3/15C22C12/00C22C28/00H10N10/853B22F2009/043
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Quick Facts
Patent No.
US 11,627,691
App. No.
15/999,846
Granted
Apr 11, 2023
Kind
B2
Abstract

Systems and methods discussed herein relate to Zintl-type thermoelectric materials, including a p-type thermoelectric material according to the formula AM y X y , and includes at least one of calcium (Ca), europium (Eu), ytterbium (Yb), and strontium (Sr), and has a ZT of the above about 0.60 above 675K. The n-type thermoelectric component includes magnesium (Mg), tellurium (Te), antimony (Sb), and bismuth (Bi) according to the formula Mg 3.2 Sb 1.3 Bi 0.5-x Te x that has an average ZT above 0.8 from 400K to 800K. The p-type and n-type materials discussed herein may be used alone, in combination with other materials, or in combination with each other in various configurations.

Claims (23)

1. A thermoelectric device comprising:

a thermoelectric material comprising a formula AM y X y , wherein the thermoelectric material comprises a dimensionless figure of merit (ZT) greater than 0.60 at about 675K, and wherein A comprises ytterbium (Yb) and calcium (Ca), wherein M comprises at least one of magnesium (Mg), or zinc (Zn), wherein X comprises at least one of bismuth (Bi) or antimony (Sb), and wherein y=2, wherein the thermoelectric material is according to the formula Ca 1-x Yb x Mg 2 Bi 2 or Ca 1-x Yb x Zn 2 Sb 2 , wherein x is from greater than 0 to about 0.9.

2. The device of claim 1 , wherein the thermoelectric material is according to the formula Ca 1-x Yb x Mg 2 Bi 2 .

3. The device of claim 1 , wherein x is from about 0.1 to 0.9.

4. The device of claim 1 , wherein x is from about 0.3 to about 0.9.

5. A thermoelectric device comprising:

a thermoelectric material comprising a formula AM y X y , wherein the thermoelectric material comprises a dimensionless figure of merit (ZT) greater than 0.60 at about 675K, and wherein A comprises ytterbium (Yb) and at least one component selected from calcium (Ca), europium (Eu), or strontium (Sr), wherein M comprises magnesium, and X comprises bismuth (Bi), and wherein y=2.

6. The device of claim 5 , wherein the at least one component comprises calcium (Ca) or europium (Eu).

7. The device of claim 5 , wherein the ZT of the thermoelectric material is greater than 0.60 at about 675K subsequent to hot-pressing.

8. The device of claim 5 , wherein the thermoelectric material is according to the formula Ca 1-x Yb x Mg 2 Bi 2 wherein x is from about 0.1 to about 0.9.

9. A thermoelectric device comprising:

a thermoelectric material comprising a formula AM y X y , wherein the thermoelectric material comprises a dimensionless figure of merit (ZT) greater than 0.60 at about 675K, and wherein A comprises ytterbium (Yb) and calcium (Ca), wherein M comprises at least one of magnesium (Mg), or zinc (Zn), wherein X comprises at least one of bismuth (Bi) or antimony (Sb), and wherein y=2, wherein the thermoelectric material is according to the formula Ca 0.5 Yb 0.5 Mg 2 Bi 2 or Ca 0.25 Yb 0.75 Zn 2 Sb 2 .

10. A thermoelectric device comprising:

a thermoelectric component comprising magnesium (Mg), tellurium (Te), antimony (Sb), and bismuth (Bi) according to the formula Mg 3.2 Sb 1.5 Bi 0.5-x Te x , wherein x is from 0.01 to 0.15; and

a thermoelectric material comprising a formula AM y X y , wherein A comprises ytterbium (Yb) and calcium (Ca), wherein M comprises at least one of magnesium (Mg), or zine (Zn), wherein X comprises at least one of bismuth (Bi) or antimony (Sb), and wherein y=2, wherein the thermoelectric material is according to the formula Ca 0.5 Yb 0.5 Mg 2 Bi 2 or Ca 0.25 Yb 0.75 Zn 2 Sb 2 .

11. The device of claim 10 , wherein the thermoelectric component comprises an average ZT above 0.8 from 400K to 800K.

12. A thermoelectric device comprising:

an n-type thermoelectric component according to the formula Mg 3.2-y Nb y Sb 1.5 Bi 0.5-x Te x , wherein x in the formula Mg 3.2-y Nb y Sb 1.5 Bi 0.5-x Te x is from 0.01 to 0.15 and wherein y; in the formula Mg 3.2-y Nb y Sb 1.5 Bi 0.5-y Te x is from 0 to 0.15; and

a p-type thermoelectric component according to the formula AM y X y , wherein the thermoelectric material comprises a dimensionless figure of merit (ZT) greater than 0.60 at about 675K, wherein A comprises ytterbium (Yb) and at least one component selected from calcium (Ca), europium (Eu), or strontium (Sr), wherein M comprises at magnesium (Mg), and wherein X comprises bismuth (Bi), wherein y=2 in the formula AM y X y , and wherein the n-type thermoelectric component is electrically coupled to the p-type thermoelectric component.

13. The device of claim 12 , wherein the at least one component comprises calcium (Ca) or europium (Eu).

14. The device of claim 12 , wherein the p-type thermoelectric material is according to the formula Ca 1-x Yb x Mg 2 Bi 2 , wherein x in the formula Ca 1-x Yb x Mq 2 Bi 2 is a great than 0 to about 0.9.

15. The device of claim 14 , wherein x in the formula Ca 1-x Yb x Mg 2 Bi 3 is from about 0.3 to about 0.9.

16. The device of claim 13 , wherein the p-type thermoelectric material is according to the formula Ca 0.5 Yb 0.5 Mg 2 Bi 2 or Ca 0.25 Yb 0.75 Zn 2 Sb 2 .

Assignments (2)
CONFIRMATORY LICENSE Recorded Jul 18, 2023
From: UNIVERSITY OF HOUSTON
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 064305/0408 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2018
From: REN, ZHIFENG; SHUAI, JING
To: UNIVERSITY OF HOUSTON SYSTEM
Reel/Frame 046914/0558 →
Continuity (2)
Provisional Application 62296902 · Feb 18, 2016
Related Publication 20210217943A1 · Jul 15, 2021