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利用水热流动反应器介导的 FIA 通过 1,10-菲啰啉与 Ru(III) 的极端加速配位作用进行高通量 Ru(III) 分析。

High-throughput Ru(III) analysis using the hydrothermal flow reactor-mediated FIA by the extreme acceleration of Ru(III) complexation with 1,10-phenanthroline.

机构信息

Department of Applied Chemistry, Graduate School of Engineering, Osaka Prefecture University, Sakai, Osaka 599-8531, Japan.

出版信息

Talanta. 2012 Sep 15;99:415-9. doi: 10.1016/j.talanta.2012.06.001. Epub 2012 Jun 18.

Abstract

A new type of flow injection analysis (FIA) combined with a high-temperature reactor maintained at 100-400 °C, namely hydrothermal flow injection analysis (HT-FIA), has been successfully applied to high throughput determination of Ru(III) on the basis of a conventional chromogenic reaction with 1,10-phenothroline (phen). Although this classical chromogenic reaction using phen is sensitive and selective for Ru(III), the complex formation of Ru(phen)(3) requires 2 h. The acceleration using HT-FIA is extraordinary high so that the determination reaction of Ru(III) was successfully shortened to 5 s at 150 °C, where the analytical procedure was accelerated more than 1000-fold. This enabled a high-throughput analysis of Ru(III) with 100 μL sample, of which at least 10 samples can be analyzed within 10 min. The detection limit of Ru(III) determined on the basis of 3 times of standard deviation was 5.3×10(-7) M (53 pmol or 5.4 ng Ru in 100 μL sample). The present study emphasizes the importance of the revival of classical chromogenic reactions, which are potentially valuable but not regarded anymore as useful because they are time-consuming and tedious, to fit for the demand for environmentally harmless analytical techniques.

摘要

一种新型的流动注射分析(FIA)与在 100-400°C 下保持的高温反应器相结合,即水热流动注射分析(HT-FIA),已成功应用于在基于与 1,10-菲啰啉(phen)的常规显色反应的基础上高通量测定 Ru(III)。尽管这种使用 phen 的经典显色反应对 Ru(III)是敏感和选择性的,但 Ru(phen)(3)的络合形成需要 2 小时。使用 HT-FIA 的加速作用非常高,以至于在 150°C 时 Ru(III)的测定反应成功缩短至 5 秒,其中分析程序加速了 1000 倍以上。这使得可以用 100μL 样品进行高通量分析 Ru(III),其中在 10 分钟内至少可以分析 10 个样品。基于 3 倍标准偏差确定的 Ru(III)检测限为 5.3×10(-7) M(100μL 样品中 53 pmol 或 5.4ng Ru)。本研究强调了经典显色反应复兴的重要性,这些反应具有潜在的价值,但由于它们耗时且繁琐,不再被认为是有用的,因此必须适应对环境无害的分析技术的需求。

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