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熔体型碘化银电极的HOI与HOIO选择性

HOI versus HOIO selectivity of a molten-type AgI electrode.

作者信息

Holló Gábor, Kály-Kullai Kristóf, Lawson Thuy B, Noszticzius Zoltán, Wittmann Maria, Muntean Norbert, Furrow Stanley D, Schmitz Guy

机构信息

Department of Physics, Budapest University of Technology and Economics , H-1521 Budapest, Hungary.

出版信息

J Phys Chem A. 2014 Jul 3;118(26):4670-9. doi: 10.1021/jp504052w. Epub 2014 Jun 19.

Abstract

UNLABELLED

AgI electrode is often applied not only to determine iodine concentration but also to follow oscillations in the weakly acidic medium of the Bray-Liebhafsky and Briggs-Rauscher reactions where it partly follows the hypoiodous acid (HOI) concentration. It is known that HOI attacks its matrix in the corrosion reaction: AgI + HOI + H(+) ⇆ Ag(+) + I2 + H2O and the AgI electrode measures the silver ion concentration produced in that reaction. The signal of the electrode can be the basis of sensitive and selective HOI concentration measurements only supposing that an analogous corrosive reaction between AgI and iodous acid (HOIO) can be neglected. To prove that assumption, the authors calibrated a molten-type AgI electrode for I(-), Ag(+), HOI, and HOIO in 1 M sulfuric acid and measured the electrode potential in the disproportionation of HOIO, which is relatively slow in that medium. Measured and simulated electrode potential versus time diagrams showed good agreement, assuming that the electrode potential is determined by the HOI concentration exclusively and the contribution of HOIO is negligible. An independent and more direct experiment was also performed giving the same result. HOIO was produced with a new improved recipe.

CONCLUSION

an AgI electrode can be applied to measure the HOI concentration selectively above the so-called solubility limit potential.

摘要

未标注

碘化银(AgI)电极不仅常用于测定碘浓度,还用于跟踪布雷 - 利布哈夫斯基(Bray - Liebhafsky)反应和布里格斯 - 劳舍尔(Briggs - Rauscher)反应在弱酸性介质中的振荡情况,在这些反应中,该电极部分跟踪次碘酸(HOI)的浓度。已知HOI在腐蚀反应中会侵蚀其基体:AgI + HOI + H(+) ⇆ Ag(+) + I2 + H2O,并且AgI电极测量该反应中产生的银离子浓度。仅当假设AgI与亚碘酸(HOIO)之间类似的腐蚀反应可忽略不计时,电极信号才能作为灵敏且选择性地测量HOI浓度的基础。为了证明这一假设,作者在1 M硫酸中对用于I(-)、Ag(+)、HOI和HOIO的熔融型AgI电极进行了校准,并测量了HOIO歧化反应中的电极电位,该歧化反应在该介质中相对较慢。测量和模拟的电极电位与时间关系图显示出良好的一致性,假设电极电位仅由HOI浓度决定且HOIO的贡献可忽略不计。还进行了一项独立且更直接的实验,得出了相同的结果。HOIO是通过一种新的改进配方制备的。

结论

AgI电极可用于在所谓的溶解度极限电位以上选择性地测量HOI浓度。

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