Electrochemistry
Online ISSN : 2186-2451
Print ISSN : 1344-3542
ISSN-L : 1344-3542
69 巻, 4 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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  • Satoka AOYAGI, Yusuke SUZUKI, Kiyotaka SAKAI, Takehiro MIYASAKA, Yasuo ...
    2001 年 69 巻 4 号 p. 251-253
    発行日: 2001/04/05
    公開日: 2019/09/25
    ジャーナル フリー

    A measurement without the influence of protein adsorption on the sensor surface has been developed using transient current of an enzyme-immobilized electrode. Response current decreases due to protein adsorption on the sensor surface and the enzyme-immobilized membrane causing glucose concentration gradient. By measuring glucose concentration in the transient state while controlling GOD activity, it is possible to prevent the influence of protein adsorption. A needle-type electrode glucose sensor on which enzyme is immobilized with a polyurethane membrane, with electrochemical on-off control of enzyme activity, is capable of accurate measurement of glucose concentration in bovine serum at least for 24 hrs.

  • Susumu ARAI, Norio KANEKO, Naoyuki SHINOHARA
    2001 年 69 巻 4 号 p. 254-258
    発行日: 2001/04/05
    公開日: 2019/09/25
    ジャーナル フリー

    Effects of organic additives on the surface morphology of electrodeposited Sn-Ag alloy for use as Pb-free soldering were investigated. Pyrophosphate-iodide bath was used as a basic Sn-Ag alloy electroplating bath. Polyethyleneglycol (mean molecular weight = 600 : PEG600) and formaldehyde were used as additives. Fine-grained and smooth electrodeposit was obtained from the bath containing both PEG600 and formaldehyde. Electrochemical behavior of tin pyrophosphate complex ion, silver iodide complex ion, PEG600, formaldehyde, and the combinations of them was examined by polarography. Formaldehyde decomposed reductively at about −1.5 V vs. saturated calomel electrode (SCE) on the mercury electrode and had no inhibitory effect on the reduction of tin pyrophosphate complex ion and silver iodide complex ion. PEG600 had a strong inhibitory effect on the reduction of tin pyrophosphate complex ion. As a result, the tin deposition (or tin-silver alloy codeposition) potential was shifted from −0.9 V to −1.6 V vs. SCE which is more negative than the potential of reductive decomposition of formaldehyde. It is suggested that the process of the reductive decomposition of formaldehyde on the cathode surface on which Sn-Ag alloy are being electrodeposited related to the smoothing of Sn-Ag alloy films.

  • 中野 博昭, 久慈 俊郎, 相澤 龍彦
    2001 年 69 巻 4 号 p. 259-263
    発行日: 2001/04/05
    公開日: 2019/09/25
    ジャーナル フリー

    Two specific phenomena were observed during electrochemical charging and discharging processes for Mg2Ni alloy electrode at the first cycle, i.e., the decrease of the absorbed hydrogen content (difference between the charged quantity of electricity and the hydrogen gas volume converted to the quantity of electricity) in an alloy during charging process and the discharge capacity larger than the absorbed hydrogen content. In order to investigate these phenomena, the electrochemical behavior of Mg2Ni alloy powders prepared by casting and bulk mechanical alloying (BMA) was studied in 6M KOH solution and water. It was consequently found that Mg(OH)2 was formed and at the same time atomic hydrogen was also formed in the solution so that the hydrogen was absorbed into Mg2Ni alloy. Hydrogen gas was also generated from the alloy surface after hydrogen absorbed was almost saturated in the alloy. Consequently, it was clearly concluded that the specific phenomenon of the former is due to the generation of gaseous hydrogen when Mg2Ni alloy reacted with H2O. The latter is also because of the discharge of the hydrogen absorbed into Mg2Ni by forming Mg(OH)2, except for discharge of the hydrogen absorbed electrochemically.

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