IP Library Patent Application 12896279
Patent Application
App. No. 12/896,279

ENCAPSULANT MATERIAL FOR PHOTOVOLTAIC MODULES

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Patent No.
US None
App. No.
12/896,279
Abstract

A photovoltaic module includes a solar cell layer having a front side for receiving light and an opposite back side, and an encapsulant layer on at least the front side of the solar cell layer. The encapsulant layer comprises a lithium ionomer for increasing the conversion efficiency of the photovoltaic module.

Claims (22)

1 . A photovoltaic module comprising:

a solar cell layer having a front side for receiving light and an opposite back side; and

an encapsulant layer on at least the front side of the solar cell layer, said encapsulant layer comprising a lithium ionomer for increasing the conversion efficiency of the photovoltaic module.

2 . The photovoltaic module of claim 1 wherein the lithium ionomer has a haze value of about 1.5.

3 . The photovoltaic module of claim 1 wherein the lithium ionomer is formed by neutralizing an acid copolymer of polyethylene with a solution of lithium hydroxide monohydrate.

4 . The photovoltaic module of claim 1 wherein said lithium ionomer comprises a C1-C9 ester of acrylic or methacrylic acid, wherein the ester is present from 0 to 30% by weight, the acid is present from 4 to 30% by weight, and the acid is neutralized from 5 to 90% with lithium cations.

5 . The photovoltaic module of claim 1 wherein the lithium ionomer further comprises rare earth ions.

6 . The photovoltaic module of claim 1 wherein the lithium ionomer further comprises rare earth ions neutralizing an acid copolymer of polyethylene to cause shifts in the wavelength of ambient light to wavelengths useful for generating electricity in photovoltaic solar cells.

7 . The photovoltaic module of claim 1 wherein the lithium ionomer further comprises butyl acrylate to reduce the flex modulus thereof.

8 . The photovoltaic module of claim 1 wherein the lithium ionomer further comprises nanoparticles of a higher refractive index material to increase the refractive index of the ionomer.

9 . The photovoltaic module of claim 8 wherein the refractive index material comprises aluminum oxide.

10 . A method of forming an encapsulant layer for covering at least the front side of a solar cell layer in a photovoltaic module comprising:

providing an acid copolymer of polyethylene; and

neutralizing the acid copolymer with lithium cations to form a lithium ionomer.

11 . The method of claim 10 wherein the lithium ionomer has a haze value of about 1.5.

12 . The method of claim 10 wherein neutralizing the acid copolymer comprises neutralizing the acid copolymer with a solution of lithium hydroxide monohydrate.

13 . The method of claim 10 wherein said lithium ionomer comprises a C1-C9 ester of acrylic or methacrylic acid, wherein the ester is present from 0 to 30% by weight, the acid is present from 4 to 30% by weight, and the acid is neutralized from 5 to 90% with lithium cations.

14 . The method of claim 10 further comprising adding rare earth ions to the acid copolymer.

15 . The method of claim 10 further comprising neutralizing the acid copolymer with selected rare earth cations or mixtures thereof that cause shifts in the wavelength of ambient light to wavelengths useful for generating electricity in photovoltaic solar cells.

16 . The method of claim 10 further comprising adding butyl acrylate to the lithium ionomer to reduce the flex modulus thereof.

17 . The method of claim 10 further comprising adding nanoparticles of a higher refractive index material to the lithium ionomer to increase the refractive index thereof.

18 . The method of claim 17 wherein the refractive index material comprises aluminum oxide.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2011
From: HANOKA, JACK I.; STATZ, ROBERT JOSEPH
To: 7AC TECHNOLOGIES, INC.
Reel/Frame 025892/0357 →