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Mechanism study of electrode processes at the interface between platinum-borosilicate melt by alternating current method. / Vatolin, A. N.; Dobina, N. D.; Sotnikov, A. I.
In: Rasplavy, No. 1, 1994, p. 54-58.

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@article{87ec2f71f79d4e6d8726ccba57786c89,
title = "Mechanism study of electrode processes at the interface between platinum-borosilicate melt by alternating current method",
abstract = "The impedance of a platinum electrode has been measured in equimolar molten sodium, boron and silicon oxides. Relations between the resistance and capacitive impedance of the interface and the electrode potential and the current frequency are derived and interpreted. The effect of the partial pressure of oxygen in gaseous phase on the potential dependence of the absorptive capacity is estimated. Agreement between the findings obtained and the previous mechanism of anodic oxidation for oxygen ions is indicated.",
author = "Vatolin, {A. N.} and Dobina, {N. D.} and Sotnikov, {A. I.}",
year = "1994",
language = "Русский",
pages = "54--58",
journal = "Rasplavy",
issn = "0235-0106",
publisher = "Издательство {"}Наука{"}",
number = "1",

}

RIS

TY - JOUR

T1 - Mechanism study of electrode processes at the interface between platinum-borosilicate melt by alternating current method

AU - Vatolin, A. N.

AU - Dobina, N. D.

AU - Sotnikov, A. I.

PY - 1994

Y1 - 1994

N2 - The impedance of a platinum electrode has been measured in equimolar molten sodium, boron and silicon oxides. Relations between the resistance and capacitive impedance of the interface and the electrode potential and the current frequency are derived and interpreted. The effect of the partial pressure of oxygen in gaseous phase on the potential dependence of the absorptive capacity is estimated. Agreement between the findings obtained and the previous mechanism of anodic oxidation for oxygen ions is indicated.

AB - The impedance of a platinum electrode has been measured in equimolar molten sodium, boron and silicon oxides. Relations between the resistance and capacitive impedance of the interface and the electrode potential and the current frequency are derived and interpreted. The effect of the partial pressure of oxygen in gaseous phase on the potential dependence of the absorptive capacity is estimated. Agreement between the findings obtained and the previous mechanism of anodic oxidation for oxygen ions is indicated.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=0028058522

M3 - Статья

SP - 54

EP - 58

JO - Rasplavy

JF - Rasplavy

SN - 0235-0106

IS - 1

ER -

ID: 52143936