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Spray Pyrolysis에 의한 Manganese Oxide 입자의 제조 및 전기화학적 특성
최원창,변동진,이중기,박달근,김현중,Choi, Won-Chang,Byun, Dong-Jin,Lee, Jung-Kee,Park, Dal-Keun,Kim, Hyeon-Joong 한국재료학회 2001 한국재료학회지 Vol.11 No.11
Spray pyrolysis is a favorable technique to form complex mixed-metal oxide powders with high purity in high temperature region. Manganese oxide powders were prepared by spray pyrolysis from an aqueous solution of $Mn(NO_3)_2$. Powders were formed in the temperature range of 500~$700^{\circ}C$ under the constant pressure of 300torr. All the powders have hydrous forms. When the temperature was increased, the size and the surface area of the particles decreased. An electrochemical capacitors were made with manganese oxide electrodes and KOH electrolyte. With the temperature decreased, capacitors showed high capacitance. Capacitor which was prepared with powders formed in the temperature $500^{\circ}C$ demonstrated specific capacitances as high as 83F/g.
금속 코팅된 흑연 입자로 제조된 전극의 전기화학적 특성
최원창,이중기,변동진,조병원,Choi, Won-Chang,Lee, Joong-Kee,Byun, Dong-Jin,Cho, Byung-Won 한국전기화학회 2003 한국전기화학회지 Vol.6 No.2
리튬이차전지 음극활물질로 사용되는 합성흑연입자에 여러종류금속을 코팅하여 그 전기화학적특성을 조사하였으며, 구체적인 코팅방법으로는 가스분산스프레이 코팅법을 적용하였다. 본 연구범위내에서 금속을 코팅한 입자로 제조된 전극은 충방전시 형성되는 계면저항을 감소시킴으로서 결과적으로 원시료에 비해서 높은 방전용량을 나타내었다. CV실험을 통해서 은과 주석은 리튬과의 합금반응을 확인할 수 있었으나, 2.5 중량$\%$ 이하의 낮은 코팅량을 고려했을 때, 높은 분산도를 지닌 금속 물질의 코팅을 통한 전극 활물질 표면의 균일한 전도도의 증가가 주요원인인 것으로 사료되었다. 단일계 금속으로 코팅하였을 경우 은코팅한 전극활물질이 가장 높은 방전용량과 사이클특성을 나타내었고, 은을 기본으로 하는 이성분계에서는 은-니켈전극이 가장 높은 고율특성을 나타내었다. Various kinds of metals were coated on synthetic graphite in order to investigate the relationship between film characteristics and their electrochemical performance. Gas suspension spray coating method was employed for the coating of synthetic graphite. In our experimental range, all of the metal coated synthetic graphite showed the higher capacity than that of raw material at high C-rate mainly due to decrease in impedance of passivation film. In cyclic voltammetry experiments, silver-coated and tin-coated graphite anodes found the lithium-alloy reaction. Considering smaller amount of metal coating, the most increase in discharge capacity was caused by improvement of conductivity of the electrode. When single-component metal was coated, silver-coated graphite anode exhibited the highest discharge capacity and better cycleability. Double components of silver-nickel coated active material showed the highest discharge capacity, rate capability and the best cycle performance in the range of our experiments.