IP Library Granted Patent US 8,431,037
Granted Patent B2
US 8,431,037 · App. 12/646,435 · Granted Apr 30, 2013

Liquid composite dielectric material

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Quick Facts
Patent No.
US 8,431,037
App. No.
12/646,435
Granted
Apr 30, 2013
Kind
B2
Abstract

An embodiment relates to a liquid composite dielectric material (LCDM) comprising a metal-containing dispersed phase material in an organic liquid phase material, wherein the liquid composite dielectric material has a dielectric permittivity (∈ r ) of 10000 or more at 40 Hz and a dielectric loss (tan δ) of 1 or less at 40 Hz.

Claims (29)

1. A liquid composite dielectric material comprising:

a metal-containing material comprising a morphotropic phase boundary, wherein the metal-containing material comprises Pb, Zr, and Ti; and

an organic liquid, wherein the organic liquid is diethylene glycol, and wherein the metal-containing material is dispersed within the organic liquid.

2. The liquid composite dielectric material of claim 1 , wherein the metal-containing material is a ferroelectric lead zirconate titanate ceramic.

3. The liquid composite dielectric material of claim 1 , wherein the metal-containing material is represented by the formula PbZr x Ti 1-x O 3 , wherein x is in the range of about 0.40 to about 0.60.

4. The liquid composite dielectric material of claim 3 , wherein x is in the range of about 0.48 to about 0.54.

5. The liquid composite dielectric material of claim 1 , wherein the liquid composite dielectric material comprises an amount of the metal-containing material in the range of about 1% to about 5% by weight.

6. The liquid composite dielectric material of claim 1 , wherein the metal-containing material is a powder form.

7. The liquid composite dielectric material of claim 1 , wherein the powder form has an average particle size in the range of about 45 nm to about 200 nm.

8. The liquid composite dielectric material of claim 1 , wherein the liquid composite dielectric material is a homogeneous solution.

9. The liquid composite dielectric material of claim 1 , wherein the liquid composite dielectric material has a dielectric permittivity (∈ r ) of 10,000 or more at 40 Hz and a dielectric loss (tan δ) of 1 or less at 40 Hz.

10. A method comprising applying a voltage to the liquid dielectric composite of claim 1 , wherein the voltage is about 1 V to about 100 V and the voltage has a frequency of about 40 Hz to about 10 MHz.

11. A liquid composite dielectric material comprising:

a metal-containing material comprising a morphotropic phase boundary, wherein the metal-containing material is represented by the formula 0.65Pb(Mg 1/3 Nb 2/3 )O 3 -0.35PbTiO 3 ; and

an organic liquid, wherein the organic liquid is a glycol, and wherein the metal-containing material is dispersed within the organic liquid.

12. The liquid composite dielectric material of claim 11 , wherein the liquid composite dielectric material comprises an amount of the metal-containing material in the range of about 1% to about 5% by weight.

13. The liquid composite dielectric material of claim 11 , wherein the metal-containing material is a powder form.

14. The liquid composite dielectric material of claim 11 , wherein the powder form has an average particle size in the range of about 45 nm to about 200 nm.

15. The liquid composite dielectric material of claim 11 , wherein the glycol is diethylene glycol.

16. A method of making a liquid composite dielectric material, the method comprising:

forming a powder by a sol gel route, wherein the powder comprises a metal-containing material having a morphotropic phase boundary, wherein the metal-containing material comprises Pb, Zr, and Ti; and

dispersing the powder in an organic liquid, wherein the organic liquid is diethylene glycol.

17. The method of claim 16 , wherein the metal-containing material is a ferroelectric lead zirconate titanate ceramic.

18. The method of claim 16 , wherein the metal-containing material is represented by the formula PbZr x Ti 1-x O 3 , wherein x is in the range of about 0.40 to about 0.60.

19. The method of claim 16 , wherein an amount of the metal-containing material in the range of about 1% to about 5% by weight is dispersed in the organic liquid.

20. A capacitor comprising a first conductor, a second conductor, and a dielectric medium disposed between the first conductor and the second conductor, wherein:

the capacitor is configured so that applying a voltage potential between the first conductor and the second conductor produces an electric field in the dielectric medium;

the dielectric medium comprises an organic liquid and a metal-containing material having a morphotropic phase boundary, wherein the organic liquid is diethylene glycol, and wherein the metal-containing material comprises Pb, Zr, and Ti; and

the metal-containing material is dispersed within the organic liquid.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Jul 31, 2019
From: CRESTLINE DIRECT FINANCE, L.P.
To: EMPIRE TECHNOLOGY DEVELOPMENT LLC
Reel/Frame 049924/0794 →
SECURITY INTEREST Recorded Jan 29, 2019
From: EMPIRE TECHNOLOGY DEVELOPMENT LLC
To: CRESTLINE DIRECT FINANCE, L.P.
Reel/Frame 048373/0217 →
CORRECTIVE ASSIGNMENT TO CORRECT THE RECEIVING PARTY DATA NAME FROM "TACHNOLOGY" TO "TECHNOLOGY" PREVIOUSLY RECORDED ON REEL 023725 FRAME 0031. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Apr 4, 2013
From: RAO, M.S. RAMACHANDRA; RAMACHANDRAN, B.
To: INDIAN INSTITUTE OF TECHNOLOGY MADRAS
Reel/Frame 030156/0680 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 31, 2009
From: RAO, M. S. RAMACHANDRA; RAMACHANDRAN, B.
To: INDIAN INSTITUTE OF TACHNOLOGY MADRAS
Reel/Frame 023725/0031 →