• Title/Summary/Keyword: 전기화학적 용해

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고성능 전기화학 장치용 마이크로-나노 하이브리드 다공성 니켈 전극

  • Choe, U-Seong;Sin, Heon-Cheol
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2012.05a
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    • pp.88.2-88.2
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    • 2012
  • 활성 물질의 원활한 확산을 위한 경사형 마이크로 기공과 넓은 반응 면적을 제공하는 나노 기공을 동시에 가지는 하이브리드 다공성 구리의 전기화학적 합성법이 보고된 이후, 이를 기능성 전기화학 장치에 활용하기 위한 많은 연구가 진행되고 있다. 하지만, 구리는 일반적으로 전기화학적 비활성 물질이기 때문에 전극 활물질로서 직접 활용되는 것은 극히 제한적이다. 또한, 전해 도금에 의하여 합성되므로 비전도성 기재 위에 형성이 불가능하여, 비전도성 기재가 기본이 되는 장치에 적용하는 것 역시 어렵다. 본 연구에서는 전해 도금법을 기본으로 하여 마이크로-나노 하이브리드 다공성 구조를 가지는 니켈을 전도성 및 비전도성 기재 위에 형성하였다. 전도성 기재 위에 제조된 니켈의 구조는 전반적으로 기존의 다공성 구리와 거의 유사하였으나 마이크로 기공의 밀도와 수지상의 형태에 있어 차이점을 보였다. 비전도성 기재 위에 형성된 니켈의 경우에는 중간 열처리 과정으로 인해 나노 수지상 구조의 다소간의 뭉침이 발견될 뿐 전도성 기재 위에 형성된 니켈과 구조가 동일하였다. 전도성 및 비전도성 기재 위에 형성된 니켈 다공성 구조를 기본을 하여 각각 전기화학적 캐패시터용 전극과 연료전지용 전극을 제작하였고, 기본적인 전기화학 특성을 파악하여 니켈 다공성 구조의 응용 가능성을 타진하였다.

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Development of high efficiency DSE for sterilization reaction (고효율 전기화학적 살균 반응용 DSE 개발)

  • Son, Seong-Ho;Kim, Hyeong-Mi;Park, Seong-Cheol;Kim, Jin-Hwa;Lee, Min-Hyeong;Yang, Se-Hun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2014.11a
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    • pp.120-121
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    • 2014
  • 전기도금, 난분해성 오폐수 처리, 해수정화, 연료전지의 촉매전극 등 다양한 전기화학반응을 이용한 산업에 전기화학법 표면처리용 DSE(Dimensionally Stable Electrode)가 많이 사용되고 있다. 고효율 전기화학적 살균 반응용 DSE를 개발하기 위해 전기화학적 특성이 좋은 이리듐(Ir), 루테늄(Ru)등의 조성비, 전처리 및 열처리등의 실험을 통해 최적의 공정 조건을 확보하였다.

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Preparation and Electrochemical Behavior of MWNT and MWNT/DAAQ Nanocomposite Materials for Electrochemical Capacitor (전기화학캐패시터용 MWNT 및 MWNT/DAAQ 나노 복합체의 제조 및 전기화학적 거동)

  • Kim, Hong-Il;Park, Soo-Gil
    • Journal of the Korean Electrochemical Society
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    • v.10 no.3
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    • pp.169-174
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    • 2007
  • MWNT/DAAQ(1,5-diaminoanthraquinone) composites were prepared by chemical polymerization of DAAQ onto MWNT and their capacitance was evaluated by means of cyclic voltammetry in 1M $H_2SO_4$ electrolyte. The performances of such cells have been compared with pure MWNT and DAAQ based electrodes. The SEM image shows that DAAQ was coated onto MWNT during polymerization and thermal stability from th TG analysis. The highest specific capacitance values of 97F/g were observed with AC-MWNT/DAAQ composite electrode. And MWNT/DAAQ based composite electrode also showed relatively good electrochemical behaviors better than MWNT electrode in sulfuric acid electrolyte.

Studies on the Electrochemical Dissolution for the Treatment of 10 g-Scale Zircaloy-4 Cladding Hull Wastes in LiCl-KCl Molten Salts (LiCl-KCl 용융염 내에서 10 g 규모의 Zircaloy-4 폐 피복관 처리를 위한 전기화학적 용해 연구)

  • Lee, You Lee;Lee, Chang Hwa;Jeon, Min Ku;Kang, Kweon Ho
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.10 no.4
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    • pp.273-280
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    • 2012
  • The electrochemical behaviors of 10 g-scale fresh and oxidized Zircaloy-4 cladding hulls were examined in $500^{\circ}C$ LiCl-KCl molten salts to confirm the feasibility of the electrorefining process for the treatment of hull wastes. In the results of measuring the potential-current response using a stainless steel basket filled with oxidized Zircaloy-4 hull specimens, the oxidation peak of Zr appears to be at -0.7 to -0.8 V vs. Ag/AgCl, which is similar to that of fresh Zircaloy-4 hulls, while the oxidation current is found to be much smaller than that of fresh Zircaloy-4 hulls. These results are congruent with the outcome of current-time curves at -0.78 V and of measuring the change in the average weight and thickness after the electrochemical dissolution process. Although the oxide layer on the surface affects the uniformity and rate of dissolution by decreasing the conductivity of Zircaloy-4 hulls, electrochemical dissolution is considered to occur owing to the defect of the surface and phase properties of the Zr oxide layer.

Electrochemical Characteristics of Pencil Graphite Electrode Through Surface Modification and its Application of Non-enzymatic Glucose Sensor (표면 개질된 샤프심 전극의 전기화학적 특성 고찰 및 비효소적 글루코스 센서 활용)

  • Min-Jung Song
    • Korean Chemical Engineering Research
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    • v.62 no.2
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    • pp.147-152
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    • 2024
  • Most medical sensors are disposable products. In order to reduce inspection and diagnosis costs, it is more important to develop the inexpensive electrode materials. We fabricated the CuO NPs/PANI/E-PGE as an electrode material for disposable electrochemical sensors and applied it to a non-enzymatic glucose sensor. For surface activation of PGE, pretreatment was performed using chemical and electrochemical methods, respectively. Electrochemical properties according to the pretreatment method were analyzed through chronoamperometry (CA), cyclic voltammetry (CV) and electrochemical impedance (EIS). From these analytical results, the electrochemically pretreated PGE (E-PGE) was finally adopted. The non-enzymatic glucose sensor based on CuO NPs/PANI/E-PGE shows sensitivity of 239.18 mA/mM×cm2 (in a linear range of 0.282~2.112 mM) and 36.99 mA/mM×cm2 (3.75423~50 mM), detection limit of 17.6 μM and good selectivity. Based on the results of this study, it was confirmed that the modified PGE is a high-performance electrode material. Therefore, these electrodes can be applied to a variety of disposable sensors.

Electrochemical Stability of Co-Mo and Ni-Mo Intermetallic Compound Electrodes for Hydrogen Electrode of Alkaline Fuel Cell (알칼리형 연료전지의 수소극용 Co-Mo 및 Ni-Mo 금속간화합물 전극의 전기화학적 안정성)

  • Lee C. R.;Kang S. G.
    • Journal of the Korean Electrochemical Society
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    • v.2 no.3
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    • pp.150-155
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    • 1999
  • The Electrochemical stabilities of the Brewer-Engel type intermetallic compounds of Co-Mo $(35 wt\%)$ and Ni-Mo$(35 wt\%)$ manufactured by the arc-melting method for the hydrogen electrode of $H_2-O_2$ alkaline fuel cell were investigated. Effects of temperature and concentration on the electrochemical behavior of the electrodes in the $80^{\circ}C$ 6 N KOH solution deaerated with $N_2$ gas were studied by electrochemical methods. The effect of overpotential on the electrochemical stabilities of Co-Mo and Ni-Mo intermetallic compounds was also discussed under the normal operation condition of AFC. It was shown that Co-Mo electrode had lower electrochemical stability as compared to Ni-Mo. In the case of Co-Mo electrode, a simultaneous dissolution of cobalt and molybdenum has occurred at low anodic overpotential form equilibrium hydrogen electrode potential, but the dissolution of cobalt was serious, and Co(OH)l layer on the electrode surface formed at the high anodic overpotential. In contrast the Ni-Mo electrode had high electrochemical stability because formation of the dense and thin protective $Ni(OH)_2$ layer prevented the dissolution of molybdenum.

Preparation of Poly(vinyl methylaniline)/Poly(aniline) Composite by Electrochemical method and Its Electrochemical Praperties (전기화학적 방법에 의한 Poly(vinyl methylaniline)/Poly(aniline) 복합체의 제조 및 전기화학적 성질)

  • 양계용;박연흠
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.04a
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    • pp.307-308
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    • 2003
  • 유기고분자 재료는 일반적으로 전기가 잘 통하지 않아 절연체로 많이 사용되어 왔다[l,2]. 근래에는 범용성 고분자와 전기전도성 고분자의 특성들을 함께 지니는 전도성 고분자 복합체를 제조하는 연구들이 많이 수행되어지고 있다[3-5]. 본 연구에서는 matrix인 비닐 고분자 내에 전기화학적으로 aniline을 중합시켜 전도성 비닐 고분자/Poly(aniline) 복합체를 제조하고자 하였다. (중략)

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