US2012148755A1PendingUtilityA1

Organic el element and method of manufacturing the same, organic el display device using the element, organic el material, and surface emission device and liquid crystal display device using the material

Assignee: YOSHIKAWA KOTAPriority: Aug 31, 2000Filed: Jan 4, 2012Published: Jun 14, 2012
Est. expiryAug 31, 2020(expired)· nominal 20-yr term from priority
Inventors:Kota Yoshikawa
H10K 59/80523H05B 33/14C08G 61/126C07D 271/107C09K 11/06C09K 2211/1425C07D 271/10Y10S428/917H10K 59/00H10K 59/35H10K 2102/351H10K 85/114H10K 50/844H10K 85/6565H10K 59/17H10K 50/826H10K 50/17H10K 59/12
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Claims

Abstract

In an organic EL element, an organic EL layer is interposed between anodes and cathodes formed on a substrate. Each of the cathodes is made of a first conductive film that comes into contact with the organic EL layer and a second conductive film that constitutes a laminated structure together with the first conductive film. The first conductive film contains any one of an alkaline metal and an alkaline earth metal. The second conductive film contains any one of at least one type metal selected from a group consisting of Ru (ruthenium), Rh (rhodium), Ir (iridium), Os (osmium) and Re (rhenium) and its oxide.

Claims

exact text as granted — not AI-modified
1 - 8 . (canceled) 
     
     
         9 . An organic EL element manufacturing method comprising the steps of:
 forming an anode on a substrate;   forming a buffer layer, which contains at least one type metal selected from a group consisting of Ru, Mo, and V, on said anode;   oxidizing a surface of said buffer layer;   forming an organic EL layer on said buffer layer; and   forming a cathode.   
     
     
         10 . An organic EL element manufacturing method according to  claim 9 , wherein said cathode contains any one of an alkaline metal and an alkaline earth metal. 
     
     
         11 . (canceled) 
     
     
         12 . An organic EL display device manufacturing method comprising the steps of:
 forming a first electrode on a substrate;   forming an organic EL layer formed of organic EL material, in which a conjugate length of polymer is changed in response to light irradiation, on said first electrode;   irradiating partially a light onto said organic EL layer to change said conjugate length; and   forming a second electrode on said organic EL layer.   
     
     
         13 - 19 . (canceled)

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