IP Library › Granted Patent US 9,653,629
Granted Patent B2
US 9,653,629 · App. 14/358,445 · Granted May 16, 2017

Substrate material of iron-nickel alloy metal foil for CIGS solar cells

Inventors: Tai Hong Yim (Gyeonggi-Do, KR); Heung Yeol Lee (Gyeonggi-Do, KR); Tae Jin Hwang (Incheon, KR); Young Sik Song (Incheon, KR); Yong Ki Cho (Gyeonggi-Do, KR); Min Su Lee (Gyeonggi-Do, KR); Yoon Ho Han (Incheon, KR)
Assignee: KOREA INSTITUTE OF INDUSTRIAL TECHNOLOGY
H01L31/0352C22C19/03C22C30/00C22C38/08C25D1/04H01L31/0322H01L31/03928Y02E10/541Y02P70/521
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Quick Facts
Patent No.
US 9,653,629
App. No.
14/358,445
Granted
May 16, 2017
Kind
B2
Abstract

The present invention relates to an exclusive alloy substrate material for CIGS solar cells. Particularly, the present invention provides a substrate material having a thermal expansion coefficient similar to that of a CIGS layer. The substrate material according to the present invention may prevent damage such as interlayer separation due to differing thermal expansion coefficients from occurring because the substrate material has a thermal expansion coefficient similar to that of the CIGS layer.

Claims (4)

1. An Fe—Ni alloy metal foil substrate material for a flexible CIGS solar cell prepared by an electroforming process, wherein the Fe—Ni alloy metal foil substrate material is composed of Fe-46 to 52 wt % Ni and has a grain size ranging from 0.1 μm to 5 μm, a thickness between 10 μm and 50 μm, and a thermal expansion coefficient ranging from 6×10 −6 /° C. to 12×10 −6 /° C., and the grain structure of the Fe—Ni alloy metal foil substrate material is formed by stabilizing the structure at a temperature between 400° C. and 600° C.

2. A method for producing an Fe—Ni alloy metal foil substrate material for a flexible CIGS solar cell, the method comprising the steps of: producing an Fe—Ni alloy metal foil which is composed of Fe-46 to 52 wt % Ni by an electroforming process using an electrode; and stabilizing the structure of the Fe—Ni metal foil by heat-treating the metal foil at a temperature between 400° C. and 600° C. for 30 minutes to 2 hours to have a grain size ranging from 0.1 μm to 5 μm.

3. The method of claim 2 , wherein the width of the Fe—Ni alloy metal foil substrate material is determined by the width of the electrode.

4. The method of claim 2 , wherein the thickness of the Fe—Ni alloy metal foil substrate material is controlled by the rotating speed of the electrode.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE COUNTRY OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 033475 FRAME: 0947. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Nov 20, 2014
From: YIM, TAI HONG; LEE, HEUNG YEOL; HWANG, TAE JIN; SONG, YOUNG SIK; CHO, YONG KI; LEE, MIN SU; HAN, YOON HO
To: KOREA INSTITUTE OF INDUSTRIAL TECHNOLOGY
Reel/Frame 034332/0684 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2014
From: YIM, TAI HONG; LEE, HEUNG YEOL; HWANG, TAE JIN; SONG, YOUNG SIK; CHO, YONG KI; LEE, MIN SU; HAN, YOON HO
To: KOREA INSTITUTE OF INDUSTRIAL TECHNOLOGY
Reel/Frame 033475/0947 →
Priority Claims (1)
KR 10-2011-0119595 · Nov 16, 2011 · national
Continuity (1)
Related Publication 20140345677A1 · Nov 27, 2014