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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Platinum black coated microdisk electrodes for the determination of high concentrations of hydrogen peroxide in phosphate buffer solutions
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Platinum black coated microdisk electrodes for the determination of high concentrations of hydrogen peroxide in phosphate buffer solutions

机译:涂有铂黑的微盘电极,用于测定磷酸盐缓冲溶液中的高浓度过氧化氢

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The performance of a series of platinum black coated microdisk electrodes (Pt-Bs) was investigated in H2O2 solutions over the concentration range 0.1-500 mM, in phosphate buffer media pH7. The Pt-Bs were prepared by electrodeposition of Pt onto the surface of microdisk electrodes 12.5 mu m of nominal radius, from aqueous solutions containing hexachloroplatinic acid. The resulting roughness factors (RF, i.e., the ratio of the effective surface area to the geometric electrode area) varied between about 10 and 100. The voltammograms recorded with these electrodes, at relatively low H2O2 concentrations (up to 50-100 mM), displayed rather steep mixed anodic-cathodic waves, which attained well-defined and stable current plateaus. At the higher hydrogen peroxide concentrations, additional waves both in the anodic and cathodic region or dramatic current drop phenomena were observed. The wave split phenomenon was attributed to the insufficient buffering capacity of the base electrolyte solution within the pores of the platinum black, induced by the large amounts of hydrogen ions produced in the oxidation process. The current drop was attributed to either the formation of oxygen bubbles, which limit diffusion of H2O2 down the pores, or saturation of the active sites responsible for the decomposition of H2O2 to O-2 and H2O. The H2O2 concentration at which the above phenomena occurred depended either on the phosphate buffer concentration in the bulk solution or the RF factor of the electrodes. The latter conditions also affected the dynamic range of detection, the sensitivity and low detection limits. Advantageous analytical characteristics were obtained with a Pt-B of RF of about 24, which provided a dynamic range between 0.5 and 230 mM, a sensitivity of 1.93( +/- 0.06) A M-1 cm(-2) and a low detection limit of 0.05 mM. The reproducibility was also very good, it being within 2-3%. The usefulness of the Pt-Bs for real samples analysis was tested in an antiseptic solution containing large amounts of H2O2. (c) 2005 Elsevier B.V. All rights reserved.
机译:在磷酸盐缓冲液pH7中,在浓度范围为0.1-500 mM的H2O2溶液中,研究了一系列涂有铂黑的微盘电极(Pt-Bs)的性能。通过从含有六氯铂酸的水溶液中将Pt电沉积到标称半径为12.5μm的微盘电极表面上来制备Pt-B。所得的粗糙度因子(RF,即有效表面积与几何电极面积之比)在大约10到100之间变化。在相对较低的H2O2浓度(最高50-100 mM)下,用这些电极记录的伏安图,显示出相当陡峭的阳极-阴极混合波,达到了明确且稳定的电流平稳状态。在较高的过氧化氢浓度下,在阳极和阴极区域都观察到其他波,或者观察到剧烈的电流下降现象。波分裂现象归因于在氧化过程中产生的大量氢离子引起的铂黑孔中基础电解质溶液的缓冲能力不足。电流下降归因于氧气气泡的形成,氧气气泡限制了H2O2在孔中的扩散,或者归因于负责将H2O2分解为O-2和H2O的活性位的饱和。发生上述现象的H2O2浓度取决于本体溶液中磷酸盐缓冲液的浓度或电极的RF因子。后面的条件也影响检测的动态范围,灵敏度和低检测限。射频的Pt-B为约24可获得有利的分析特性,其动态范围介于0.5和230 mM之间,灵敏度为1.93(+/- 0.06)A M-1 cm(-2),并且检出率低极限为0.05 mM。重现性也非常好,在2-3%以内。在含有大量H2O2的消毒溶液中测试了Pt-B对真实样品分析的有用性。 (c)2005 Elsevier B.V.保留所有权利。

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