• Title/Summary/Keyword: 전기화학적 실험

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Electrochemistry and Corrosion Characteristics of Polyaniline Dispersion Coating for Protection of Steels (강철보호를 위한 폴리아닐린 분산 코팅의 전기화학 및 부식특성)

  • Huh, Jae-Hoon;Oh, Eung-Ju;Cho, Jeong-Hwan
    • Journal of the Korean Electrochemical Society
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    • v.6 no.2
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    • pp.113-118
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    • 2003
  • Processible polyaniline (PAM) dispersions consisting of polyaniline micro-particles, cyclohexanone, and a polymeric surfactant were prepared in a micro-milling machine with various mixing conditions. The electrochemical properties of the dispersion film coated on Pt electrode were investigated by cyclic voltammetry (CV). The electrochemistry of the PAM dispersion coatings was basically similar to a pure PAM coating based on the results of CV. The results of polarization measurements and open circuit potential measurements carried out in $3\;wt.\%$ NaCI solution showed increase in corrosion potential when the PANI dispersion coatings applied on steel surface. Variation of open circuit potential $(OCP,\;V_{OC})$ of the dispersion coating/steel electrodes was observed, which differed with milling conditions. The results demonstrated practical use of the conducting polymer dispersion as a coating material for corrosion prevention of steel.

The Neurophysiological Approaches in Animal Experiments (신경생리학적(神經生理學的) 동물실험(動物實驗))

  • Cheon, Jin-Sook
    • Korean Journal of Biological Psychiatry
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    • v.5 no.1
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    • pp.3-16
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    • 1998
  • The neurophysiological study has been widely used in search of the relationship between brain and behavior. The basic techniques for the animal experiments of this kind such as stereotaxic techniques, lesioning methods, the methods of electrical stimulation and recording, and confirmation of histological location were briefly reviewed. Nevertheless, the importance of complementary neurochemical, neuroanatomical and behavioral studies can not be neglected.

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Electrochemical Behaviors and Analytical Application of Copper-1,5,9,13-Tetrathiacyclohexadecane Complex in Acetonitrile (아세토니트릴 용매 중에서 Copper-1,5,9,13-Tetrathiacyclohexadecane착물의 전기화학적 거동과 그 분석적 응용)

  • Moo-Lyong Seo;Bu-Yong Lee;Myung-Ja Choi;Bae Jun Ung;Park Tae Myeong
    • Journal of the Korean Chemical Society
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    • v.36 no.3
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    • pp.412-418
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    • 1992
  • The electrochemical behaviors and analytical application of copper-1,5,9,13-tetrathiacyclohexadecane[16-ane-$S_4$] complex in acetonitrile(AN) solution have been investigated by the use of DC polarography and differential pulse polarography. Thus the formation constant of copper complex was $10^{3.51}$. Copper (Ⅱ) ion was found to form complex of 1-to-1 composition with [16-ane-$S_4$]. In addition, reduction step was irreversible and the reduction current was diffusion controlled. And the effect of concentration of the salting-out reagent and chelating agent and pH of aqueous phase on the determination of copper (Ⅱ) was investigated and diverse ion effect was discussed. By salting-out extraction technique, we can be determined until the concentration of copper (Ⅱ) of 60 ppb.

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Kinetic Parameter Analysis of Hydrogen Diffusion Reaction for Hydrogen Storage Alloy of Fuel Cell System (연료전지의 수소저장용 합금에 대한 수소확산반응의 속도론적 해석)

  • Kim, Ho-Sung
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.20 no.2
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    • pp.45-49
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    • 2006
  • Electrochemical hydrogenation/dehydrogenation properties were studied for a single particle of a Mm-based(Mm : minh metal) hydrogen storage alloy($MmNi_{3.55}Co_{0.75}Mn_{0.4}Al_{0.3}$) for fuel cell and Ni-MH batteries. A carbon fiber microelectrode was manipulated to make electrical contact with an alloy particle, and the potential-step experiment was carried out to determine the apparent chemical diffusion coefficient of hydrogen atom($D_{app}$) in the alloy. Since the alloy particle we used here was a dense, conductive sphere, the spherical diffusion model was employed for data analysis. $D_{app}$ was found to vary the order between $10^{-9}\;and\;10^{-10}[cm^2/s]$ over the course of hydrogenation and dehydrogenation process. Compared with the conventional composite film electrodes, the single particle measurements using the microelectrode gave more detailed, true information about the hydrogen storage alloy.

Improvement in Sensitivity of Electrochemical Glucose Biosensor Based on CuO/Au@MWCNTs Nanocomposites (CuO/Au@MWCNTs 나노복합재 기반 전기화학적 포도당 바이오센서의 민감도 개선)

  • Park, Mi-Seon;Bae, Tae-Sung;Lee, Young-Seak
    • Applied Chemistry for Engineering
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    • v.27 no.2
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    • pp.145-152
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    • 2016
  • In this study, CuO was introduced on MWCNTs dispersed with Au nanoparticles to improve the glucose sensing capability of electrochemical biosensors. Nano-cluster shaped CuO was synthesized due to the presence of Au nanoparticle, which affects glucose sensing performance. The biosensor featuring CuO/Au@MWCNTs nanocomposite as an electrode material when 0.1 mole of CuO was synthesized showed the highest sensitivity of $504.1{\mu}A\;mM^{-1}cm^{-2}$, which is 4 times better than that of MWCNTs based biosensors. In addition, it shows a wider linear range from 0 to 10 mM and lower limit of detection (LOD) of 0.008 mM. These results demonstrate that CuO/Au@MWCNTs nanocomposite sensors are superior to other CuO based biosensors which are attributed that the nano-cluster shaped CuO is favorable for the electrochemical reaction with glucose molecules.

The novel methods for doping of Ru oxide on TiO2 nanotubes thin-film on Ti substrate by electrochemical anodization (타이타늄 나노튜브 박막 상의 루테늄 산화물의 전기화학적 도핑 방법)

  • Yu, Hyeon-Seok;O, Gi-Seok;Choe, Jin-Seop
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.235-236
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    • 2015
  • $TiO_2$는 표면적이 넓고 안정성이 높아 자체의 높은 밴드갭(3.0~3.2 eV)에도 불구하고 산업적으로 염소분해 전극으로써 사용되며, 최근 물분해 전극 적용 연구가 진행되고 있다. 전기화학적 물분해 반응을 위해서는 높은 과전압이 요구되므로 산업적으로 이용하기 위해 전도성을 향상시키기 위한 연구가 필요하다. 이러한 문제를 해결하기 위해 촉매제의 도핑이 연구되고 있으며 본 연구에서는 표면에 촉매를 도핑시키기 위한 두가지 방법을 연구하였다. 일반적으로 촉매로 사용되는 금속은 루테늄과 이리듐 등의 귀금속이며 촉매가 균일하게 도핑이 될수록 성능은 향상된다. 본 연구에서는 루테늄을 촉매로 선택하였으며 서로 다른 도핑 방법과 용매 하에서 물분해 실험을 진행하여 두 가지 방법의 물분해 효율을 비교하였다.

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전기화학적증착 방법으로 인가전압 변화에 따라 형성한 SnO2 나노구조의 전기적 및 구조적 성질

  • Hwang, Jun-Ho;No, Yeong-Su;Lee, Dae-Uk;Kim, Tae-Hwan
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.397-397
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    • 2012
  • 에너지갭이 큰 SnO2 반도체는 빛 투과율이 우수하여 투명성이 좋으며 화학적으로 안정된 구조를 가지고 있어 전자소자 및 광소자 응용에 대단히 유용하다. SnO2 박막을 증착하는 방법은 Physical Vapor Deposition과 Chemical Vapor Deposition이 있으나 나노 구조를 가진 SnO2를 형성하기 어렵다. 전기 화학적 증착 (Electrochemical Deposition: ECD)은 낮은 온도에서 진공 공정이 필요하지 않기 때문에 경제적이며 빠른 성장 속도를 가지고 있기 때문에 SnO2 나노 구조를 효과적으로 형성 할 수 있다. 본 연구에서는 Indium Tin Oxide (ITO) 기판 위에 SnO2 나노 구조를 형성시켜 전기적 및 구조적 특성을 관찰하였다. 0.015 M의 Tin chloride pentahydrate(SnCl4 5H2O)를 타켓 물질로 사용하고 0.1 M의 KCl을 완충물질로 사용하여 SnO2 나노구조를 성장하였다. 타겟 물질이 잘 녹지 않으므로 DI water와 ethanol을 7:3의 비율로 용매 사용하였다. 전류-전압 곡선을 분석하여 최적의 성장조건을 확보하고, $65^{\circ}C$ 1기압 하에서 -2.5 V 부터 -1.0 V까지 0.5 V 간격으로 나누어서 SnO2 나노구조를 성장하였다. X-선 회절 분석결과에서 SnO2의 피크의 크기가 큰 전기화적적 성장 전압구간과, 주사전자현미경 분석 결과에서 나노 구조가 가장 잘 나타난 성장 전압구간을 다시 0.1 V 간격으로 세분화하여 최적화 조건을 분석하였다. X-선 회절 실험으로 형성한 SnO2 나노구조의 피크가 (110) (101) (200) (211) (310)로 나타났다. X-선 회절 분석의 intensity의 값이 (101)방향이 가장 크게 나타났으므로 우선적으로 (101) 방향으로 SnO2 나노구조가 성장됨을 알 수 있었다. 주사전자현미경상은 grain size가 50~100 nm 사이의 SnO2 나노구조가 형성되며, grain size가 전기화학적 증착 장치의 성장전압이 저 전압 구간에서 커지는 것을 알 수 있었다.

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Analysis of Electroosmosis Drainage in Clayey Soil (점성토의 전기삼투 배수에 관한 분석)

  • 김병일;한상재;김수삼
    • Journal of the Korean Geotechnical Society
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    • v.19 no.1
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    • pp.131-142
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    • 2003
  • The characteristics of electroosmosis drainage in clayey soil were investigated, when an electrokinetic technique was applied for the purpose of separating heavy metals in contaminated ground. A series of laboratory tests, considering voltage, zeta potential, pH distribution, and current, were performed for a lead-contaminated kaolin. The results of laboratory tests were compared with numerical analysis of finite difference method. The 1311owing conclusions were obtained: The flow velocity in electroosmosis was very sensitive to the chemical and electrical characteristics of the clay. As the concentration of ion increases, the flow rate decreases and the amount of drainage also decreases as time elapses.

Microstructures and Electrochemical Properties of Si-M (M : Cr, Ni) as Alloy Anode for Li Secondary Batteries (리튬이차전지용 Si-M (M : Cr, Ni) 합금 음극의 미세구조와 전기화학적 특성)

  • Lee, Sung-Hyun;Sung, Jewook;Kim, Sung-Soo
    • Journal of the Korean Electrochemical Society
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    • v.18 no.2
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    • pp.68-74
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    • 2015
  • To compare the microstructure and electrochemical properties between two binary alloys (Cr-Si, Ni-Si), two composition of binary alloys with the same capacity were selected using phase-diagram and prepared by matrix-stabilization method to suppress the volume expansion of Si by inactive-matrix. Master alloys were made by Arc-melting followed by fine structured ribbon sample preparation by Rapid Solidification Process (RSP, Melt-spinning method) under the same conditions. Also powder samples were produced by wet grinding for X-Ray Diffraction (XRD) and electrochemical measurements. As predicted from the phase diagram, only active-Si and inactive-matrix ($CrSi_2$, $NiSi_2$) were detected. The results of Scanning Electron Microscope (SEM) and Transmission Electron Microscopy - Energy Dispersive X-ray Spectroscopy (TEM-EDS) show that Cr-Si alloy has finer microstructure than Ni-Si alloy, which was also predictable through phase diagram. The electrochemical properties related to microstructure were evaluated by coin type full- and half-cells. Separately, self-designed test-cells were used to measure the volume expansion of Si during reaction. Volume expansion of Cr-Si alloy electrode with finer microstructure was suppressed significantly and improved in cycle capability, in comparison Ni-Si alloy with coarse microstructure. From these, we could infer the correlation of microstructure, volume expansion and electrochemical degradation and these properties might be predicted by phase diagram.

Electrochemical Nitrogen Reduction Reaction to Ammonia Production at Ambient Condition (상온 상압 조건에서 전기화학적 질소환원반응을 통한 암모니아 생산 연구 동향)

  • Lee, Dong-Kyu;Sim, Uk
    • Journal of the Korean Electrochemical Society
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    • v.22 no.1
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    • pp.1-12
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    • 2019
  • The reduction of nitrogen to produce ammonia has been attracting much attention as a renewable energy technology. Ammonia is the basis for many fertilizers and is also considered an energy carrier that can power internal combustion engines, diesel engines, gas turbines, and fuel cells. Traditionally, ammonia has been produced through the Haber-Bosch process, in which atmospheric nitrogen combines with hydrogen at high temperature ($350-550^{\circ}C$) and high pressure (150-300 bar). This process consumes 1-2% of current global energy production and relies on fossil fuels as an energy source. Reducing the energy input required for this process will reduce $CO_2$ emissions and the corresponding environmental impact. For this reason, developing electrochemical ammonia-production methods under ambient temperature and pressure conditions should significantly reduce the energy input required to produce ammonia. In this review, we introduce the electrochemical nitrogen reduction reaction at ambient condition. Numerical studies on the electrochemical nitrogen reduction mechanism have been carried out through the computation of density function theory. Electrodes such as nanowires and porous electrodes have been also actively studied for further participation in electrochemical reactions.