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基于1,10-菲咯啉-过氧化氢反应,采用带有化学发光检测的微芯片毛细管电泳进行金属离子分析。

Metal ion analysis using microchip CE with chemiluminescence detection based on 1,10-phenanthroline-hydrogen peroxide reaction.

作者信息

Nogami Takahiro, Hashimoto Masahiko, Tsukagoshi Kazuhiko

机构信息

Department of Chemical Engineering and Materials Science, Faculty of Science and Engineering, Doshisha University, Kyotanabe, Japan.

出版信息

J Sep Sci. 2009 Feb;32(3):408-12. doi: 10.1002/jssc.200800448.

Abstract

We developed a microchip CE method with chemiluminescence (CL) detection using the reaction of 1,10-phenanthroline and hydrogen peroxide for separation and determination of metal ions, where the metal ions acted as catalysts for the CL reaction. The microchip consisted of two microchannels that crossed at the intersection and four reservoirs that accessed the ends of the channels. The metal ions in the sample solution migrated in the channel along with 1,10-phenanthroline included in a running solution, and then mixed with hydrogen peroxide in one of the reservoirs to emit CL. The light was detected with a photomultiplier tube located just above the reservoir. Two metal ion groups, the platinum metal group (Ru(III), Rh(III), Pd(II), Os(VIII), Ir(III), and Pt(IV)) and the fourth periodic transition metal group (Cu(II), Fe(II), Co(II), and Ni(II)) were examined using the present system. The lowest detection limit was observed for Os(VIII); Os(VIII) responded over the range of 7.5x10(-12)-1.0x10(-8 )M with the detection limit of 7.5x10(-12 )M (about 38 zmol) (S/N = 3). The mixed solution of Ru(III), Rh(III), Pd(II), Os(VIII), Ir(III), and Pt(IV) could be analyzed using this system within about 2.5 min. In addition, the system was applied to the determination of Cu(II) concentration in a city water supply.

摘要

我们开发了一种采用化学发光(CL)检测的微芯片毛细管电泳方法,利用1,10 - 菲咯啉与过氧化氢的反应来分离和测定金属离子,其中金属离子作为化学发光反应的催化剂。该微芯片由两条在交叉点处交叉的微通道和四个与通道末端相连的储液器组成。样品溶液中的金属离子与运行溶液中所含的1,10 - 菲咯啉一起在通道中迁移,然后在其中一个储液器中与过氧化氢混合以发出化学发光。通过位于储液器正上方的光电倍增管检测光信号。使用该系统对两个金属离子组进行了检测,即铂金属组(Ru(III)、Rh(III)、Pd(II)、Os(VIII)、Ir(III)和Pt(IV))以及第四周期过渡金属组(Cu(II)、Fe(II)、Co(II)和Ni(II))。观察到Os(VIII)的检测限最低;Os(VIII)在7.5×10⁻¹² - 1.0×10⁻⁸ M范围内有响应,检测限为7.5×10⁻¹² M(约38 zmol)(信噪比 = 3)。使用该系统可在约2.5分钟内分析Ru(III)、Rh(III)、Pd(II)、Os(VIII)、Ir(III)和Pt(IV)的混合溶液。此外,该系统还应用于城市供水水样中Cu(II)浓度的测定。

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