• Title/Summary/Keyword: organic electronics

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Fabrication of Organic Field-Effect Transistors with Low Gate Leakage Current by a Functional Polydimethylsiloxane Layer (PDMS 기능성 박막을 이용한 적은 게이트 누설 전류 특성을 가지는 유기트랜지스터의 제작)

  • Kim, Sung-Jin
    • Journal of the Korean Vacuum Society
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    • v.18 no.2
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    • pp.147-150
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    • 2009
  • We present a technique for fabricating low leakage organic field-effect transistors by a functional polydimethylsiloxane (PDMS) layer. The technique relies on the photo-chemical process of conversion of the PDMS to a silicon oxide which provides the selective growth of pentacene thin films. The reduced gate leakage current showed ${\sim}10^{-10}$ A in a linear ($V_d=-5\;V$) and saturation ($V_d=-30\;V$) region at $V_g-V_t>0$.

Synthesis of Organic Carbonates with Alkyl/aryl 4,5-dichloro-6-oxopyridazine-1(6H)-carboxylates and ROH/AlCl3 under Ambient Condition

  • Sung, Gi Hyeon;Kim, Bo Ram;Ryu, Ki Eun;Kim, Jeum-Jong;Yoon, Yong-Jin
    • Bulletin of the Korean Chemical Society
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    • v.35 no.9
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    • pp.2758-2764
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    • 2014
  • We demonstrated the synthesis of organic carbonates using alkyl/aryl 4,5-dichloro-6-oxopyridazine-1(6H)-carboxylates and alcohol in the presence of aluminum chloride. Alkyl/aryl 4,5-dichloro-6-oxopyridazine-1(6H)-carboxylates were reacted with alcohol in the presence of $AlCl_3$ in toluene at room temperature to afford the corresponding unsymmetric and symmetric organic carbonates in good to excellent yields. These are efficient and convenient processes. Alkyl/aryl 4,5-dichloro-6-oxopyridazine-1(6H)-carboxylates are solid, stable and non-toxic $CO_2/CO_2R$(Ar) source. It is noteworthy that the reaction is carry out under an ambient and acidic conditions, the easy-to prepare and readily available starting materials and the quantitative isolation of reusable 4,5-dichloropyridazin-3(2H)-one.

Oligothiophene-based Semi-Conducting Nanostructures: from Solution to Solid-State Aggregates

  • Leclere, Ph.;Surin, M.;Lazzaroni, R.;Feast, W.J.;Schenning, A.P.H.J.;Meijer, E.W.
    • Proceedings of the Polymer Society of Korea Conference
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    • 2006.10a
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    • pp.304-304
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    • 2006
  • The possibility to develop optoelectronic devices with improved properties by controlling the degree of organization at the molecular level of organic materials has been driving the design of new ${\pi}-conjugated$ systems. In particular, the organization by self-assembling processes (${\tilde{\Box}}{\d{\Box}}}$ interactions, hydrogen bonding) of well-defined oligomeric systems such as disubstituted oligothiophene derivatives has been demonstrated as a promising approach to conjugated materials with a high degree of structural order of the constituent building blocks. The self-organization of conjugated building blocks in solution or on surfaces, leading to the construction of nanoscopic and mesoscopic architectures, represents a starting point for the construction of molecular electronics or even circuits, through surface patterning with nanometer-sized objects.

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Dispersion Properties of Epoxy-layered Silicate Nanocomposites Using Homogenizer (균질기를 이용한 에폭시-층상 실리케이트 나노콤포지트 분산 특성)

  • Lee, Sang-Keuk;Park, Jae-Jun
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.26 no.2
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    • pp.126-133
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    • 2013
  • This paper presents a study on the dispersion effect of the X-Ray diffraction, glass transition and DMA properties of organic modifier clay/epoxy nanocomposites produced in a homogenizer. Several experiments were conducted including different types of dispersion condition with varying processing conditions such as homogenizer rotor speed and applied time of homogenizer. The effects of these variables on the dispersion properties of nanocomposites were then studied. In order to fully understand the experimental results, a X-ray diffraction, DSC and DMA were used to investigate the effect of above mentioned variables on microstructure and intercalation/exfoliation of organic modifier clay/epoxy nanocomposites. The results from this work could be used to determine the best processing condition to obtain appropriate levels of d-spacing, glasss transition temperature and storage modulus in organic modifier clay/epoxy nanocomposites.

Structural Control and Two-Dimensional Order of Organic Thiol Self-Assembled Monolayers on Au(111)

  • No, Jae-Geun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.26-26
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    • 2011
  • Self-assembled monolayers (SAMs) prepared by sulfur-containing organic molecules on metal surfaces have drawn much attention for more than two decades because of their technological applications in wetting, chemical and biosensors, molecular recognition, nanolithography, and molecular electronics. In this talk, we will present self-assembly mechanism and two-dimensional (2D) structures of various organic thiol SAMs on Au(111), which are mainly demonstrated by molecular-scale scanning tunneling microscopy (STM) observation. In addition, we will provide some idea how to control 2D molecular arrangements of organic SAMs. For instance, the formation and surface structure of pentafluorobenzenethiols (PFBT) self-assembled monolayers (SAMs) on Au(111) formed from various experimental conditions were examined by means of STM. Although it is well known that PFBT molecules on metal surfaces do not form ordered SAMs, we clearly revealed for the first time that adsorption of PFBT on Au(111) at $75^{\circ}C$ for 2 h yields long-range, well-ordered self-assembled monolayers having a $(2{\times}5\sqrt{13})R30^{\circ}$ superlattice. Benzenethiols (BT) SAMs on gold usually have disordered phases, however, we have clearly demonstrated that the displacement of preadsorbed cyclohexanethiol self-assembled monolayers (SAMs) on Au(111) by BT molecules can be a successful approach to obtain BT SAMs with long-range ordered domains. Our results will provide new insight into controlling the structural order of BT or PFBT SAMs, which will be very useful in precisely tailoring the interface properties of metal surfaces in electronic devices.

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A Study on the Electrical Characteristics of Pentacene Organic Thin Film Transistor using Organic Gate Insulator (유기물 게이트 절연체를 사용한 pentacene 유기 박막 트랜지스터의 전기적 특성에 관한 연구)

  • Kim, Yun-Myoung;Kim, Ok-Byoung;Kim, Jung-Soo;Kim, Young-Kwan;Zyung, Tae-Hyung
    • Proceedings of the KIEE Conference
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    • 2000.11c
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    • pp.446-448
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    • 2000
  • Organic semiconductors based on vacuum-deposited films of fused-ring polycyclic aromatic hydrocarbon have great potential to be utilized as an active layer for electronic and optoelectronic devices. In this study, pentacene thin films and electrode materials were deposited by Organic Molecular Beam Deposition (OMBD) and vacuum evaporation respectively. For the gate dielectric layer, OPTMER PC403 photo acryl (JSR Coporation.) was spin-coated and cured at $220^{\circ}C$. Electrical characteristics of the devices were investigated, where the channel length and width was $50{\mu}m$ and 5 mm. It was found that field effect mobility was $0.039\;cm^2V^{-1}s^{-1}$, threshold voltage was -7 V, and on/off current ratio was $10^6$.

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Nano-porous Silicon Microcavity Sensors for Determination of Organic Fuel Mixtures

  • Pham, Van Hoi;Bui, Huy;Hoang, Le Ha;Nguyen, Thuy Van;Nguyen, The Anh;Pham, Thanh Son;Ngo, Quang Minh
    • Journal of the Optical Society of Korea
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    • v.17 no.5
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    • pp.423-427
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    • 2013
  • We present the preparation and characteristics of liquid-phase sensors based on nano-porous silicon multilayer structures for determination of organic content in gasoline. The principle of the sensor is a determination of the cavity-resonant wavelength shift caused by refractive index change of the nano-porous silicon multilayer cavity due to the interaction with liquids. We use the transfer matrix method (TMM) for the design and prediction of characteristics of microcavity sensors based on nano-porous silicon multilayer structures. The preparation process of the nano-porous silicon microcavity is based on electrochemical etching of single-crystal silicon substrates, which can exactly control the porosity and thickness of the porous silicon layers. The basic characteristics of sensors obtained by experimental measurements of the different liquids with known refractive indices are in good agreement with simulation calculations. The reversibility of liquid-phase sensors is confirmed by fast complete evaporation of organic solvents using a low vacuum pump. The nano-porous silicon microcavity sensors can be used to determine different kinds of organic fuel mixtures such as bio-fuel (E5), A92 added ethanol and methanol of different concentrations up to 15%.

Thin Metal Electrodes for Semitransparent Organic Photovoltaics

  • Lee, Kyu-Sung;Kim, Inho;Yeon, Chang Bong;Lim, Jung Wook;Yun, Sun Jin;Jabbour, Ghassan E.
    • ETRI Journal
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    • v.35 no.4
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    • pp.587-593
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    • 2013
  • We demonstrate semitransparent organic photovoltaics (OPVs) based on thin metal electrodes and polymer photoactive layers consisting of poly(3-hexylthiophene) and [6,6]-phenyl $C_{61}$ butyric acid methyl ester. The power conversion efficiency of a semitransparent OPV device comprising a 15-nm silver (Ag) rear electrode is 1.98% under AM 1.5-G illumination through the indium-tin-oxide side of the front anode at 100 $mW/cm^2$ with 15.6% average transmittance of the entire cell in the visible wavelength range. As its thickness increases, a thin Ag electrode mainly influences the enhancement of the short circuit current density and fill factor. Its relatively low absorption intensity makes a Ag thin film a viable option for semitransparent electrodes compatible with organic layers.

Basic Properties of Cell Fabricated by Ion-beam Treatment for In-plane Switching LCD

  • Seo, Joo-Hong;Lee, Sung-Pil;Yoon, Tae-Hoon;Kim, Jae-Chang
    • Journal of Information Display
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    • v.7 no.1
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    • pp.12-18
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    • 2006
  • We investigated the horizontal alignment properties such as surface morphology, pretilt angle, and polar and azimuthal anchoring energy of organic alignment material-coated surface treated by ion beam. In this investigation the energy and incident angle of ion beam were changed. We also fabricated an in-plane switching (IPS) cell by ion beam alignment. The results showed similar voltage-transmittance characteristics to those of a rubbed cell and better dark state.

Novel Red Electroluminescent Material with Indandion Pyran Molecular Backbone

  • Kim, Dong-Uk;Tak, Yoon-Heung;Han, Yoon-Soo;Kim, Sang-Dae;Kim, Ki-Beom;Kim, Tae-Jeong;Baek, Jeong-Ju;Park, Lee-Soon
    • 한국정보디스플레이학회:학술대회논문집
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    • 2003.07a
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    • pp.914-916
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    • 2003
  • Novel red organic electroluminescent (EL) dye, RED was developed for an application to the emission layer of EL device. Well known red material DCJTB was also used for comparison. Two kinds of devices were fablicated; one is ITO/ CuPc / TPD / 0.5% RED-1 in Alq3/ Alq3/ Li20/ Al and the other is ITO/ CuPc /TPD / 0.5% DCJTB in Alq3/Alq3/ Li20 / Al. External quantum efficiency of the EL device with RED was two times higher than that of the device with DCJTB. The maximum EL peak was detected at 635nm in the RED EL device.

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