Electrochemistry
Online ISSN : 2186-2451
Print ISSN : 1344-3542
ISSN-L : 1344-3542
67 巻, 11 号
選択された号の論文の14件中1~14を表示しています
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  • Osamu HATOZAKI, Noboru OYAMA
    1999 年 67 巻 11 号 p. 1036-1041
    発行日: 1999/11/05
    公開日: 2019/11/15
    ジャーナル フリー

    Redox activity of an organosulfur compound with multiple thiol groups and its application to a cathode active material of lithium batteries are described. To accelerate a slow redox reaction of organosulfur compounds such as 2,5-dimercapto-1,3,4-thiadiazole (DMcT), conducting polymer polyaniline (PAn) is mixed with organosulfur compounds, yielding a composite material. Within the composite, DMcT and PAn interact at molecular-level and the redox reaction of DMcT is successfully accelerated by PAn. The DMcT /PAn composite shows a promise as a high energy cathode active material with the discharge capacity of 185 Ah/kg-cathode and the average discharge voltage at 3.4 V. Furthermore, using a copper foil as a cathode current collector, battery performances of the composite cathode are significantly improved. The observed improvement is attributed to a formation of a complex between a copper ion and DMcT, which accelerates the redox reaction of DMcT. The discharge capacity of the composite cathode on a copper current collector is 225 Ah/kg-cathode. The discharge capacity is further increased to 500 Ah/kg-cathode by adding elemental sulfur to the composite.

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  • Iwao MOGI, Kazuo WATANABE, Mitsuhiro MOTOKAWA
    1999 年 67 巻 11 号 p. 1051-1053
    発行日: 1999/11/05
    公開日: 2019/11/15
    ジャーナル フリー

    Magnetic fields were applied to the electropolymerization of pyrrole as a novel technique to control the properties of conducting polymers. The p-toluenesulfonate-doped polypyrrole films prepared in the magnetic fields exhibited a more negative cathodic peak in the cyclic voltammograms. This voltammetric change at the reduction process was explained as change from the anion undoping to the cation doping, and such dopingundoping behavior was confirmed by the measurements of electrochemical quartz crystal microbalance.

  • 前川 武之, 野崎 歩, 宮下 章志, 内川 英興
    1999 年 67 巻 11 号 p. 1054-1056
    発行日: 1999/11/05
    公開日: 2019/11/15
    ジャーナル フリー

    Extensive researches on LiNiO2 as a new cathode material for lithium ion secondary batteries have been performed. They will be able to achieve both the higher capacity and the lower cost than those of the conventional cathode material, LiCoO2. However, it is well known that LiNiO2 has low stability and its capacity decreases with increasing charge/discharge cycles in spite of the good performance at the first cycle. We tried to observe the cross sections of LiNiO2 particles by using SIM (Scanning Ion Microscopy), and compared the particles between initial and after charge/discharge cycles. Those powders were single crystals prepared by CSD(Citric Spray Drying) process. LiNiO2 particles after 10 cycles were broken into pieces, whose sizes were the range from 0.1 to 0.5 μm. We expect that the destroy of particles was caused by the stress with expansion and contraction of the crystal.

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