Enhanced Hole-Injection Property in an OLED with a Self-assembled Monolayer of Hole-Transporting TPD on Thin Au as the Anode
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://link.springer.com/article/10.1007/s12209-018-0161-7/fulltext.html
Reference35 articles.
1. Cho JH, Lee DH, Lim JA et al (2004) Evaluation of the adhesion properties of inorganic materials with high surface energies. Langmuir 20(23):10174–10178
2. Lee KH, Jang HW, Kim KB et al (2004) Mechanism for the increase of indium-tin-oxide work function by O2 inductively coupled plasma treatment. J Appl Phys 95(2):586–590
3. Hashimoto Y, Osato Y, Tanaka M et al (2002) Effect of oxygen plasma treatment of indium tin oxide for organic light-emitting devices with iodogallium phthalocyanine layer. Jpn J Appl Phys 41:2249–2251
4. Shen Y, Jacobs DB, Malliaras GG et al (2001) Modification of indium tin oxide for improved hole injection in organic light emitting diodes. Adv Mater 13:1234–1238
5. Bernède JC, Martinez F, Neculqueo G et al (2008) On the improvement of the electroluminescent signal of organic light emitting diodes by the presence of an ultra-thin metal layer at the interface organic/ITO. Phys Stat Solidi (RRL) 2(1):10–12
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