• Title/Summary/Keyword: Amorphous Fluoropolymers

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Affect of Organic materials defending on the Electrical Characteristics of Red OLEDs (적색 OLEDs 전기적 특성에 미치는 유기물 (H-D)의 영향)

  • Oh, Dong-Hoon;Lim, Jin-Taek;Lee, Moo-Ah;Moon, Sun-Young;Jang, Kwon-Woo;Choi, Hyun-Min;Kim, Weon-Jong;Hong, Jin-Woong
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2009.06a
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    • pp.310-310
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    • 2009
  • In the two structure of ITO/N,N'-diphenyl-N,N' bis (3-methylphenyl)-1,1'-biphenyl-4,4'-diamine(TPD)/R-H : R-D/Al device, ITO/Amorphous Fluoropolymers/TPD/R-H : R-D/LiF/Al device. we studied the effect of organic materials defending on the electrical characteristics of red OLEDs. The thickness of TPD and R-H : R-D was manufactured 40 nm, 60 nm, respectively under a base pressure of $5\times10^{-6}$Torr using a thermal evaporation. The AF used for an hole-injection is the thickness of 0.5 [nm] and the LiF used for an electron-injection is the thickness of 0.5 [nm]. Compared to the two from the devices made with the hole injection and without hole injection We found that the luminous efficiency and the external quantum efficiency are improved a fact of one- hundred, two, respectively.

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Gas Separation Properties and Their Applications of High Permeable Amorphous Perfluoropolymer Membranes (고투과성 무정형 불소고분자 불리막의 기체분리 특성 및 응용)

  • Freeman, Benny D.;Park, Ho-Bum
    • Membrane Journal
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    • v.17 no.2
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    • pp.81-92
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    • 2007
  • Membrane-based separation processes are receiving increasing attention in the scientific community and industry since they provide a desirable alternative to processes that are not easy to achieve by conventional separation technologies. In particular, gas separation using polymeric membranes have annually grown so fast owing to advantages such as easy installation, no moving parts, small footprint and low energy process. The key element is definitely a polymer membrane exhibiting high permeability and high selectivity to compete with other gas separation technologies. Current polymer membranes used for commercial gas separation are a family of hydrocarbon polymers for hydrogen separation, air separation and carbon dioxide separation from natural gas sweetening. Relatively, gas or vapor separation properties of fluoropolymers are not known so much as compared with those of hydrocarbon polymers. Accordingly, in this study, membranes prepared from amorphous perfluoropolymers are of particular interest because of the unique properties of these polymers. The advantages offered by these amorphous perfluoropolymers for use in gas and vapor separation will be discussed. In addition, membrane properties and separation performance will be compared with other membranes available on the market.