IP Library Granted Patent US 7,326,473
Granted Patent B2
US 7,326,473 · App. 10/274,752 · Granted Feb 5, 2008

Organic electroluminescent devices

Assignees: Junji Kido; International Manufacturing and Engineering Services Co., Ltd.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,326,473
App. No.
10/274,752
Granted
Feb 5, 2008
Kind
B2
Abstract

An organic electroluminescent (EL) device comprising at least one luminescent layer of an organic compound, the luminescent layer being positioned between a cathode electrode and an anode electrode opposed to the cathode electrode, and an organic layer positioned adjacent to the cathode electrode, in which the organic layer is constituted from an organic metal complex compound containing at least one of alkali metal ions, alkali earth metal ions and rare earth metal ions, and the cathode electrode is constituted from a metal capable of reducing the metal ion in the complex compound, in vacuum, to the corresponding metal. The cathode electrode can be formed from a low cost and stable metal which is well-known as the wiring material. The EL device ensures a diminished energy barrier in an electron injection from the cathode electrode into the luminescent layer, a lowered driving voltage, and a high efficiency and luminescence.

Claims (51)

1. An organic electroluminescent device comprising:

at least one luminescent layer comprising an organic compound, said luminescent layer being positioned between a cathode electrode layer and an anode electrode layer opposed to said cathode electrode layer; and

an organic electron injection layer positioned adjacent to said cathode electrode layer,

wherein said organic electron injection layer comprises an organic metal complex compound containing at least one metal ion selected from an alkali metal ion, an alkaline earth metal ion and a rare earth metal ion, and

wherein said cathode electrode layer contains a metal selected from aluminum, zirconium, titanium, yttrium, scandium, or silicon, all of which metals have a capability of thermally reducing said at least one metal ion contained in said organic metal complex compound, in vacuum, and

wherein a metal is reduced from said at least one metal ion and is liberated from said organic metal complex compound; and

wherein said luminescent layer and said organic electron injection layer are not the same.

2. The organic electroluminescent device according to claim 1 , in which the metal in said cathode electrode layer is aluminum.

3. The organic electroluminescent device according to claim 1 , in which said organic electron injection layer has a thickness of about 10 Å.

4. The organic electroluminescent device according to claim 1 , in which said metal which constitutes said cathode electrode layer is an alloy containing at least any one of aluminum, zirconium, titanium, yttrium, scandium, and silicon.

5. An organic electroluminescent device comprising:

at least one luminescent layer comprising an organic compound, said luminescent layer being positioned between a cathode electrode layer and an anode electrode layer opposed to said cathode electrode layer; and

an organic electron injection layer positioned adjacent to said cathode electrode layer,

wherein said organic electron injection layer comprises an organic metal complex compound containing at least one metal ion selected from an alkali metal ion, an alkaline earth metal ion and a rare earth metal ion, and

wherein said cathode electrode layer contains a metal selected from aluminum, zirconium, titanium, yttrium, scandium, or silicon, all of which metals have a capability of thermally reducing said at least one metal ion contained in said organic metal complex compound, in vacuum, and

wherein a metal is reduced from said at least one metal ion and is liberated from said organic metal complex compound; and

wherein said luminescent layer and said organic electron injection layer are not the same and wherein said organic electron injection layer has a thickness of about 10 Å.

6. An organic electroluminescent device comprising:

at least one luminescent layer comprising an organic compound, said luminescent layer being positioned between a cathode electrode layer and an anode electrode layer opposed to said cathode electrode layer; and

an organic electron injection layer positioned adjacent to said cathode electrode layer,

wherein said organic electron injection layer comprises an organic metal complex compound containing at least one metal ion selected from an alkali metal ion, an alkaline earth metal ion and a rare earth metal ion, and

wherein said cathode electrode layer contains a metal selected from aluminum, zirconium, titanium, yttrium, scandium, or silicon, all of which metals have a capability of thermally reducing said at least one metal ion contained in said organic metal complex compound, in vacuum, and

wherein a metal is reduced from said at least one metal ion and is liberated from said organic metal complex compound; and

wherein said luminescent layer and said organic electron injection layer are not the same and wherein said organic electron injection layer has a thickness of less than 100 Å.

7. An organic electroluminescent device comprising:

at least one luminescent layer comprising an organic compound, said luminescent layer being positioned between a cathode electrode layer and an anode electrode layer opposed to said cathode electrode layer; and

an organic electron injection layer positioned adjacent to said cathode electrode layer,

wherein said organic electron injection layer comprises an organic metal complex compound containing at least one metal ion selected from a sodium ion, a potassium ion, a rubidium ion, a cesium ion, a francium ion, a magnesium ion, a calcium ion, a strontium ion, a barium ion, a radium ion and a rare earth metal ion, and

wherein said cathode electrode layer contains a metal selected from aluminum, zirconium, titanium, yttrium, scandium, or silicon, all of which metals have a capability of thermally reducing said at least one metal ion contained in said organic metal complex compound, in vacuum, and

wherein a metal is reduced from the said at least one metal ion and is liberated from said organic metal complex compound; and

wherein said luminescent layer and said organic electron injection layer are not the same.

8. An organic electroluminescent device comprising:

at least one luminescent layer comprising an organic compound, said luminescent layer being positioned between a cathode electrode layer and an anode electrode layer opposed to said cathode electrode layer; and

an organic electron injection layer positioned adjacent to said cathode electrode layer,

wherein said organic electron injection layer comprises an organic metal complex compound containing at least one metal ion selected from an alkali metal ion, an alkaline earth metal ion and a rare earth metal ion, and

wherein said cathode electrode layer contains a metal selected from zirconium, scandium, or silicon, all of which metals have a capability of thermally reducing said at least one metal ion contained in said organic metal complex compound, in vacuum, and

wherein a metal is reduced from said at least one metal ion and is liberated from said organic metal complex compound; and

wherein said luminescent layer and said organic electron injection layer are not the same.

9. An organic electroluminescent device comprising:

at least one luminescent layer comprising an organic compound, said luminescent layer being positioned between a cathode electrode layer and an anode electrode layer opposed to said cathode electrode layer; and

an organic electron injection layer positioned adjacent to said cathode electrode layer,

wherein said organic electron injection layer comprises an organic metal complex compound containing at least one metal ion selected from an alkali metal ion, an alkaline earth metal ion and a rare earth metal ion, with the proviso that said organic metal complex compound excludes Liq (lithium 8-hydroxyquinolinate) and Beq (beryllium bis(10-hydroxybenzo[h]quinolinate)), and

wherein said cathode electrode layer contains a metal selected from aluminum, zirconium, titanium, yttrium, scandium, or silicon, all of which metals have a capability of thermally reducing said at least one metal ion contained in said organic metal complex compound, in vacuum, and

wherein a metal is reduced from said at least one metal ion and is liberated from said organic metal complex compound; and

wherein said luminescent layer and said organic electron injection layer are not the same.

10. An organic electroluminescent device comprising:

at least one luminescent layer comprising an organic compound, said luminescent layer being positioned between a cathode electrode layer and an anode electrode layer opposed to said cathode electrode layer; and

an organic electron injection layer positioned adjacent to said cathode electrode layer,

wherein said organic electron injection layer comprises an organic metal complex compound containing at least one metal ion selected from a lithium ion and a beryllium ion, and

wherein said cathode electrode layer contains a metal selected from aluminum, titanium, or yttrium, all of which metals have a capability of thermally reducing said at least one metal ion contained in said organic metal complex compound, in vacuum, and

wherein a metal is reduced from said at least one metal ion and is liberated from said organic metal complex compound.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2008
From: INTERNATIONAL MANUFACTURING AND ENGINEERING SERVICES CO., LTD.
To: ROHM CO., LTD.
Reel/Frame 020828/0617 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2008
From: KIDO, JUNJI; ENDOH, JUN; MIZUKAMI, TOKIO
To: INTERNATIONAL MANUFACTURING AND ENGINEERING SERVICES CO., LTD.
Reel/Frame 020610/0321 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2008
From: MATSUMOTO, TOSHIO
To: KIDO, JUNJI; INTERNATIONAL MANUFACTURING AND ENGINEERING SERVICES CO., LTD.
Reel/Frame 020479/0576 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2007
From: KIDO, JUNJI; ENDOH, JUN; MIZUKAMI, TOKIO
To: INTERNATIONAL MANUFACTURING AND ENGINEERING SERVICES CO., LTD.
Reel/Frame 019462/0796 →
Priority Claims (1)
JP 10-34599 · Feb 17, 1998 · national
Continuity (2)
Continuation 0925020500 · Feb 16, 1999
Related Publication 20030072967A1 · Apr 17, 2003