• 제목/요약/키워드: hole injection layer

검색결과 199건 처리시간 0.025초

비정질 셀레늄의 누설전류 저감을 위한 다층구조 제작 및 특성 평가 (The Multi-layer Fabrication and Characteristic Performance for Dark Current Reduction of Amorphous Selenium)

  • 박지군;강상식;석대우;이형원;남상희
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2002년도 하계학술대회 논문집 Vol.3 No.2
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    • pp.849-852
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    • 2002
  • Recently, amorphous selenium is used as x-ray conversion material for flat-panel x-ray detector. In this paper, we investigated the effect of breakdown under high voltage and leakage current in PN-type multi-layer structure based on p-type a-Se and n-type conductive thin film. Experimental results show that the multi-layer based detector reduced leakage current because n-type CeO2 conductive layer prevent from hole injection into a-Se layer from collection electrode, Also, the breakdown voltage was improved by dielectric layer between a-Se and top electrode.

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잭업리그 스퍼드캔의 물 분사용 홀 형상 최적화 (Shape Optimization of a Hole for Water Jetting in a Spudcan for a Jack-up Rig)

  • 성정현;한동섭;박영철
    • 대한기계학회논문집A
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    • 제40권4호
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    • pp.337-342
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    • 2016
  • 스퍼드캔(spudcan)은 잭업리그(jack-up rig)의 다리 하단에 장착되며, 해저면에 구조물을 안정적으로 지지하여 구조물의 전복사고를 방지하기 위한 장치이다. 표층이 모래 층일 때는 침투(penetration) 시에 스퍼드캔을 안정적으로 삽입하기 위해서, 그리고 점토 층일 때는 회수(extraction) 시에 원활하게 뽑아 올리기 위해서 스퍼드캔에는 물 분사장치가 장착되어 있다. 본 연구에서는 물 분사장치를 위한 배관라인용 홀의 형상을 최적화하기 위해 크게 타원형과 원형 두 가지 형상을 설정하였다. 해석을 위해 대상 Site 는 멕시코만(Gulf of Mexico)로 선정하였고 대상 플랫폼은 해상풍력발전기설치선(WTIV)을 선택하였다. 상용프로그램인 ANSYS Workbench 를 사용하여 최적설계를 진행하였다. 본 연구결과는 다양한 해양구조물의 홀 형상설계에 적용될 수 있다.

[TCTA-TAZ] : Ir(ppy)3 이중 발광층을 갖는 고효율 녹색 인광소자의 제작과 특성 평가 (Fabrication and Characterization of High Efficiency Green PhOLEDs with [TCTA-TAZ] : Ir(ppy)3 Double Emission Layers)

  • 신상배;신현관;김원기;장지근
    • 한국재료학회지
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    • 제18권4호
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    • pp.199-203
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    • 2008
  • High-efficiency phosphorescent organic light emitting diodes using TCTA-TAZ as a double host and $Ir(ppy)_3$ as a dopant were fabricated and their electro-luminescence properties were evaluated. The fabricated devices have the multi-layered organic structure of 2-TNATA/NPB/(TCTA-TAZ) : $Ir(ppy)_3$/BCP/SFC137 between an anode of ITO and a cathode of LiF/AL. In the device structure, 2-TNATA[4,4',4"-tris(2-naphthylphenyl-phenylamino)-triphenylamine] and NPB[N,N'-bis(1-naphthyl)-N,N'-diphenyl-1,1'-biphenyl-4,4'-diamine] were used as a hole injection layer and a hole transport layer, respectively. BCP [2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline] was introduced as a hole blocking layer and an electron transport layer, respectively. TCTA [4,4',4"-tris(N-carbazolyl)-triphenylamine] and TAZ [3-phenyl-4-(1-naphthyl)-5-phenyl-1,2,4-triazole] were sequentially deposited, forming a double host doped with $Ir(ppy)_3$ in the [TCTA-TAZ] : $Ir(ppy)_3$ region. Among devices with different thickness combinations of TCTA ($50\;{\AA}-200\;{\AA}$) and TAZ ($100\;{\AA}-250\;{\AA}$) within the confines of the total host thickness of $300\;{\AA}$ and an $Ir(ppy)_3$-doping concentration of 7%, the best electroluminescence characteristics were obtained in a device with $100\;{\AA}$-think TCTA and $200\;{\AA}$-thick TAZ. The $Ir(ppy)_3$ concentration in the doping range of 4%-10% in devices with an emissive layer of [TCTA ($100\;{\AA}$)-TAZ ($200\;{\AA}$)] : $Ir(ppy)_3$ gave rise to little difference in the luminance and current efficiency.

시안기를 가진 유기 EL 물질들의 합성 및 유기 EL 소자에서의 발광특성평가 (Synthesis of Organic EL Materials with Cyano Group and Evaluation of Emission Characteristics in Organic EL Devices)

  • 김동욱
    • 대한화학회지
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    • 제43권3호
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    • pp.315-320
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    • 1999
  • 고성능 전계발광(electroluminescent, EL) 소자에 사용되는 발광물질의 개발을 위하여 설계된 발광기능기의 분자구조는 비스스틸렌구조의 발광기능기에 전자주입과 수송을 위한 시안기와 정공주입과 수송을 위한 페닐아민기를 가진 구조이다. 위의 발광기능기로 구성 된 고분자물질, PU-BCN과 저분자물질, D-BCN을 합성하였다. PU-BCN과 D-BCN을 발광층으로 사용하여 만들어진 단층형 소자(SL)의 구조는 Indium-tin oxide(ITO)/발광층/MgAg이고, 적층형소자의 구조는 ITO/발광층/oxadiazole dehvative/MgAg, (DL-E)와 ITO/tri-phenylamine derivative/발광층/MgAg,(DL-H)의 두 종류이다. 동일한 발광기능기를 가진 고분자 발광물질, PU-BCN과 저분자발광물질, D-BCN은 전하주입과 수송성이 띄어난 물질로 평가되었으며, 두 발광물질들은 높은 전류밀도하에서 거의 동일한 발광특성을 보였다. 발광물질들의 최대 발광 피이크는 약 640 nm의 적색 발광영역에서 측정되었다.

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Low operating voltage and long lifetime organic light-emitting diodes with vanadium oxide $(V_2O_5)$ doped hole transport layer

  • Yun, J.Y.;Noh, S.U.;Shin, Y.C.;Baek, H.I.;Lee, C.H.
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2006년도 6th International Meeting on Information Display
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    • pp.1038-1041
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    • 2006
  • We report low operating voltage and long lifetime organic light-emitting diodes (OLEDs) with a vanadium oxide $(V_2O_5)-doped$ N,N'-di(1-naphthyl)- N,N'-diphenylbenzidine $({\alpha}-NPD)$ layer between indium tin oxide and ${\alpha}-NPD$. At a luminance of $1000\;cd/m^2$, $V_2O_5$ doped ${\alpha}-NPD$ device shows a operation voltage of 5.1V, while the device without $V_2O_5$ shows 5.8V. The $V_2O_5$ doped $({\alpha}-NPD)$ device also shows a longer lifetime and smaller operation voltage variation over time. It is suggested that the improved device performance can be attributed to the higher hole-injection efficiency and stability of the $V_2O_5$ doped $({\alpha}-NPD)$ layer.

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Characteristic Effects of Buffer Layers on Organic Light Emitting Devices

  • Park, Jae-Hoon;Lee, Yong-Soo;Kwak, Yun-Hee;Choi, Jong-Sun
    • KIEE International Transactions on Electrophysics and Applications
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    • 제11C권3호
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    • pp.43-48
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    • 2001
  • The stability and efficiency of organic light emitting devices are the most critical problems to be solved. The devices based on tris-8-(hydroxyquinoline) aluminum ($Alq_3$) and N,N-diphenyl-N,N-bis(3-methylphenyl)-1, 1-biphenyl-4,4-diamine (TPD) were used to study the effects of buffer layers on their characteristics. We have investigated the characteristic effects of CuPc (copper phthalocyanine) and pentacene buffer layers on the device characteristics, the (5${\sim}$20 nm thick) CuPc layers and the (10${\sim}$20 nm thick) pentacene layers were deposited. Efficiency was slightly improved and the turn-on voltages of the devices with the buffer layers were observed to have lower values than those of the devices without the buffer layers. It is believed that this result is attributed to the improvement of hole injection capability through the buffer layers into hole transport layer (HTL). We have also studied the atomic force microscopic images of the TPD layers deposited on the buffer layer and the bare ITO.

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유기발광 다이오드의 정공수송층 두께에 따른 미소 공진 효과의 영향에 관한 연구 (A Study on the Effects of Micro Cavity on the HTL Thicknesses on the Top Emission Organic Light Emitting Diode)

  • 이동운;조의식;성진욱;권상직
    • 반도체디스플레이기술학회지
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    • 제21권1호
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    • pp.91-94
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    • 2022
  • Top emission organic light-emitting diode is commonly used because of high efficiency and good color purity than bottom - emission organic light-emitting device. Unlike BEOLED, TEOLED contain semi-transparent metal cathode. Because of semi-transparent cathode, micro cavity effect occurs in TEOLED. We optimized this effect by changing the thickness of hole injection layer. Device consists of is indium-tin-oxide / N,N'-Di-[(1-naphthyl)-N,N'-diphenyl]-1,1'-biphenyl-4,4'-diamine (x nm) / tris-(8-hydroxyquinoline) aluminum (50nm) / LiF(0.5nm) / Mg:Ag (1:9), and we changed NPB thickness which is used as HTL in our device in order to study how micro cavity effects are changed by optical path. As the results, NPB thickness at 35nm showed the current efficiency of 8.55Cd/A.

Inverted CdSe@ZnS Quantum Dots Light-Emitting Diode using Low-Work Function Polyethylenimine Ethoxylated (PEIE) modified ZnO

  • Kim, Choong Hyo;Kim, Hong Hee;Hwang, Do Kyung;Suh, Kwang S;Park, Cheol Min;Choi, Won Kook
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.148-148
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    • 2015
  • Over the past several years, Colloidal core/shell type quantum dots lighting-emitting diodes (QDLEDs) have been developed for the future of optoelectronic applications. An inverted-type quantum-dot light-emitting-diode (QDLED), employing low work function organic material polyethylenimine ethoxylated(PEIE) (<10 nm)[1] modified ZnO nanoparticles (NPs) as electron injection and transport layer, was fabricated by all solution processing method, instead of electrode in the device. The PEIE surface modifier incorporated on the top of the ZnO NPs film, facilitates the enhancement of both electorn injection into the CdSe-ZnS QD emissive layer by lowering the workfunction of ZnO from 3.58eV to 2.87eV and charge balance on the QD emitter. In this inverted QDLEDs, blend of poly (9,9-di-n-octyl-fluorene-alt-benzothiadiazolo) and poly(N,N'-bis(4-butylphenyl)-N,N'-bis(phenyl)benzidine] are used as hole transporting layer (HTL) to improve hole transporting property. At the operating voltage of 7.5 V, the QDLED device emitted spectrally orange color lights with high luminance up to 11110 cd/m2, and showed current efficiency of 2.27 cd/A.[2]

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Yellow Light-Emitting Poly(p-phenylenevinylene) Derivative with Balanced Charge Injection Property

  • Kim, Joo-Hyun;Lee, Hoo-Sung
    • Bulletin of the Korean Chemical Society
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    • 제25권5호
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    • pp.652-656
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    • 2004
  • A new luminescent polymer, poly{1,4-phenylene-1,2-ethenediyl-2'-[2"-(4'"-octyloxyphenyl)-(5"-yl)-1",3",4"-oxadiazole]-1,4-phenylene-1,2-ethenediyl-2,5-bis-dodecyloxy-1,4-phenylene-1,2-ethenediyl} (Oxd-PPV), was synthesized by the Heck coupling reaction. Electron withdrawing pendant, conjugated 1,3,4-oxadiazole (Oxd), is on the vinylene unit. The band gap of the polymer figured out from the UV-visible spectrum was 2.23 eV and the polymer film shows bright yellow emission maximum at 552 nm. The electroluminescence (EL) maximum of double layer structured device (ITO/PEDOT:PSS/Oxd-PPV/Al) appeared at 553 nm. Relative PL quantum yield of Oxd-PPV film is 3.6 times higher than that of MEH-PPV film. The HOMO and LUMO energy levels of Oxd-PPV figured out from the cyclic voltammogram and the UV-visible spectrum are -5.32 and -3.09 eV, respectively, so that more balanced hole and electron injection efficiency can be expected compared to MEH-PPV. A double layer EL of Oxd-PPV has an maximum efficiency of 0.15 cd/A and maximum brightness of 464 cd/$m^2$.

Poly(3-hexylthiophene) 발광소자의 금속전극 의존성 (Dependance on Metal Electrode of Poly(3-hexylthiophene) EL Device)

  • 서부완;김주승;김형곤;이경섭;구할본
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 추계학술대회 논문집
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    • pp.162-165
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    • 2000
  • To investigate the effect of metal electrode in electroluminescent[EL] devices, we fabricated EL devices of ITO/P3HT/Al, ITO/P3HT/LiF/Al and ITO/P3HT/Mg:In structure. In current-voltage-light power characteristics, turn-on voltage of EL devices using LiF insulating layer and Mg:In(2.8V) metal electrode is lower than EL device using Al(4.2V). Besides the external quantum efficiency is improved also. The reason is related to carrier mobility and carrier injection, which would affect the hole-electron balance. In the device with Al electrode, holes injected from indium-tin-oxide[ITO] to poly(3-hexylthiophene)[P3HT] might reach the Al electrode without interacting with injected electrons, because the electron injection efficiency was very low for this electrode. Besides oxidation of the Al electrode is likely due to holes reaching the cathode without meeting injected electrons. Another possible reason for the higher EL efficiency may be the insulating layer playing the role of a tunneling barrier for holes to the Al electrode. In all EL devices, the orange-red light was clearly visible in a dark room. Maximum peak wavelength of EL spectrum emitted at 640nm in accordance with photon energy 1.9eV

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