• Title/Summary/Keyword: long electrode

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The Electrochemical Reaction Mechanism and Applications of Quinones

  • Kim, R. Soyoung;Chung, Taek Dong
    • Bulletin of the Korean Chemical Society
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    • v.35 no.11
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    • pp.3143-3155
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    • 2014
  • This tutorial review provides a general account of the electrochemical behavior of quinones and their various applications. Quinone electrochemistry has been investigated for a long time due to its complexity. A simple point of view is developed that considers the relative stability of the reduced quinone species and the values of the first and second reduction potentials. The 9-membered square scheme in buffered aqueous solutions is explained and semiquinone radical stability is discussed in this context. Quinone redox reaction has also been employed in various studies. Diverse examples are presented under three broad categories defined by the roles of quinone: molecular tool for physical chemistry, versatile electron mediator, and charge storage for energy conversion devices.

Electrical Relaxation in Silica Glasses and Nonlinearity in Electrical Conductivity (실리카 유리의 전기이완 특성과 비선형적 전기전도도)

  • 신동욱
    • Journal of the Korean Ceramic Society
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    • v.36 no.9
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    • pp.923-929
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    • 1999
  • The cause of optical nonlinearity induced in thermally poled silica glass is believed to be the space charge polarization. Since the second order optical nonlinearity (electro-optic effect) can be used in optical switches the optical nonlinearity in silica glass has drawn a large attention. Space charge polarization occurs when an ionic conducting material is subjected to dc electric field by the blocking electrode. Thermal poling performed to induce the optical nonlinearity in silica glass is basically identical to the process generating space charge polarization. As a first step to understand the mechanism of space charge polarization in silica glass hence the induced optical nonlinearity the absorption currents as functions of time were measured for various types of silica glasses and analyzed by the theory of space charge polarization. It was found that the electrical relaxation exhibited a step by the space charge polarization in the relatively long time range and dielectric loss peak showed a maximum at a specific temperature which is depending on type of silica glass. It was turned out that this relaxation might be a cause of nonlinearity in electrical conductivity of silica glass.

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Performance Characteristics of Direct Methanol Fuel Cell with Methanol Concentration (메탄올 농도에 따른 직접 메탄올 연료전지의 성능 해석)

  • Cho, Chang-Hwan;Kim, Yong-Chan;Chang, Young-Soo
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.20 no.3
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    • pp.197-204
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    • 2008
  • DMFC(Direct Methanol Fuel Cell) is one of promising candidates for power sources of small mobile IT devices like notebook, cell phone, and so on. Efficient operation of fuel cell system is very important for long-sustained power supply because of limited fuel tank size. It is necessary to investigate operation characteristics of fuel cell stack for optimal control of DMFC system. The generated voltage was modeled according to various operating condition; methanol concentration, stack temperature, and load current. It is inevitable for methanol solution at anode to cross over to cathode through MEA(membrane electrode assembly), which reduces the system efficiency and increases fuel consumption. In this study, optimal operation conditions are proposed by analyzing stack performance model, cross-over phenomenon, and system efficiency.

Joule Heating of Metallic Nanowire Random Network for Transparent Heater Applications

  • Pichitpajongkit, Aekachan;Eom, Hyeonjin;Park, Inkyu
    • Journal of Sensor Science and Technology
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    • v.29 no.4
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    • pp.227-231
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    • 2020
  • Silver nanowire random networks are promising candidates for replacing indium tin oxide (ITO) as transparent and conductive electrodes. They can also be used as transparent heating films with self-cleaning and defogging properties. By virtue of the Joule heating effect, silver nanowire random networks can be heated when voltage bias is applied; however, they are unsuitable for long-term use. In this work, we study the Joule heating of silver nanowire random networks embedded in polymers. Silver nanowire random networks embedded in polymers exhibit breakdown under the application of electric current. Their surface morphological changes indicate that nanoparticle formation may be the main cause of this electrical breakdown. Numerical analyses are used to investigate the temperatures of the silver nanowire and substrate.

A Study on the Characteristics of DC Flashover with Floating Metallic Objects in Unipolar Ion Field (불평등 전계중에 금속구 및 금속침의 부유 물체가 존재하는 경우의 Flashover특성)

  • Seok, B.Y.;Huh, G.D.;Kim, K.S.;Cho, J.S.;Park, C.H.
    • Proceedings of the KIEE Conference
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    • 1995.11a
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    • pp.469-471
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    • 1995
  • This paper describes the effect of floating metallic object on do flashover characteristics in all gap producing unipolar ion flow field. Needle-to-plane electrodes of 120mm in gap length were used as the main gap electrode and the tested metallic objects were spheres with the radius of 2,10 and 15mm or needles from 5 to 40mm long. The characteristics of flashover voltage vs. location of the floating object are different completely with the shape of the floating metal and polarity of the applied voltage.

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Ruthenium Oxide Electrode Deposited on 3D Nanostructured-nickel Current Collector and Its Application to Supercapacitors

  • Ryu, Ilhwan;Kim, Green;Park, Dasom;Yim, Sanggyu
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.181.1-181.1
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    • 2014
  • Supercapacitor is attracting growing attention for a promising energy conversion and storage device because of its desirable electrochemical properties such as rapid charge-discharge rate, high power density and long cycle life. Three-dimensional (3D) metal nanostructure has been widely studied since it can provide efficient charge transport along the 3D network in many device applications. In this work, we fabricated well-ordered 3D nickel (Ni) nanostructures using 3D-arrayed polystyrene nano-opal substrates. We also fabricated half-cell supercapacitors by electrodepositing $RuO_2$ onto these nanostructured Ni current collectors and investigated their morphological and electrochemical properties.

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Influence of Surface Functional Group of Carbon Nanotubes for Applications in Electrochemical Capacitors

  • Park, Sul Ki
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.480.2-480.2
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    • 2014
  • Electrochemical capacitors have been the most strong energy storage devices due to high power density and long cycle stability. Pristine carbon nanotubes are promising electrode materials for excellent electrical conductivity and high specific surface area in electrochemical capacitor. However, the practical application of pristine carbon nanotubes was limited by the aggregation into bundles due to van der Waals force. In this research, we explained how multi-walled carbon nanotubes (MWCNT) functionalized by carboxyl, sulfonic, and amine groups (CNT-COOH, CNT-SO3H, CNT-NH2) to improve the performances of MWCNT. Functionalized CNTs showed two- to four-fold increase in capacitance over that of pristine CNTs, while maintaining reasonable cyclic stability. But, the CNT-COOH showed the lowest rate capability of 57% compared to 84%, 86% of CNT-SO3H and CNT-NH2. As demonstrated by the spectroscopic analysis, This reseach showed how surface functional group of carbon nanotubes change capacitor performances.

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Analysis on the Discharge Characteristics of AC Plasma Display Panel with Counter Sustain Electrodes (교류형 플라즈마 표시기의 신 대향형 구조에 대한 방전 특성 분석)

  • Bae, Hyun-Sook;Whang, Ki-Woong
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.57 no.9
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    • pp.1579-1583
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    • 2008
  • We proposed the new structure of ac plasma display panel(PDP) to improve the luminous efficacy and driving voltage characteristics. Through two-dimensional numerical simulations, we analyzed the effects of new counter discharge type, which consists of counter sustain electrodes and auxiliary electrodes. Generally, an advantage of AC PDP with the counter sustain electrodes has been known for the driving characteristics of the low voltage. In this work, the new counter structure using the ignition discharge by the auxiliary pulse applied to the address electrode showed the result of the increased luminous efficacy. The short gap discharge between two auxiliary electrodes on the front plate could intensity the long gap discharge between counter electrodes. The reliability of simulation result could be confirmed by the experimental result in the test panel.

Electrochemical Properties of Viologen Self-Assembly Monolayer Using QCM (수정진동자를 이용한 Viologen Self-Assembly 단분자막의 전기화학적 특성)

  • 옥진영;신훈규;박재철;장정수;권영수
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.16 no.6
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    • pp.496-500
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    • 2003
  • Molecular self-assembled of surfactant viologen are of recent interest because they can from functional electrodes as well as micellar assemblies, which can be profitably utilized for display devices, photoelectrochemical studies and electrocatalysis as electron acceptor or electron mediator. Fromherz et al studied the self-assembly of thiol and disulfide derivatives of viologens bearing long n-alkyl chains on Au electrode surface[1]. The electrochemical behavior of self-assembled viologen monolayer has been investigated with QCM, which has been known as nano-gram order mass detector. The self-assembly process of viologen was monitored using resonant frequency(ΔF) and resonant resistance(R). The redox process of viologen was observed with resonant frequency(ΔF).

Fabrication of Long Metal Nanowire by Electrospinning Process for the Transparent Electrode (고종횡비 금속 나노튜브 기반 투명전극 제조기술)

  • Lee, Chang-Myeon;Heo, Jin-Yeong;Lee, Hong-Gi
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.132.1-132.1
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    • 2017
  • 본 연구에서는 투명전극 제조를 목적으로 전기방사법을 이용하여 미세구리 패턴을 형성하는 방법에 대하여 연구하였다. $Ag^+$이온이 용해된 폴리비닐부티랄(PVB) 고분자 용액을 폴리에틸렌 테레프탈레이트(PET)와 같은 투명기판 위에 전기방사 하여 $Ag^+$이온/PVB 복합나노와이어를 제조한 후 이를 UV 조사로 환원하여 선택적으로 촉매를 형성하였다. 이후 연속적인 무전해 구리 도금을 통하여 촉매 위에 미세구리배선을 형성함으로써, 투명전극을 제조하였다. 개발 공정을 통해 제조된 투명전극은 기존 Ag나노와이어 기반 투명전극에서 발생하던 접촉저항에 대한 문제를 해결함으로써 전기적, 광학적 특성이 우수한 차세대 유연 디스플레이에 적용 가능성을 보여주었다.

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