Puyol Mar, Salinas Iñigo, Garcés Ignacio, Villuendas Francisco, Llobera Andreu, Domínguez Carlos, Alonso Julián
Department of Chemistry, Autonomous University of Barcelona, Catalonia, Spain.
Anal Chem. 2002 Jul 15;74(14):3354-61. doi: 10.1021/ac025520m.
The first prototype of a technologically improved integrated waveguide absorbance optode (IWAO) was developed and tested with a membrane based on a new H+-selective ketocyanine dye and a cadmium ionophore. It was designed with curved instead of rectilinear planar waveguides. Results demonstrated the suitability of the new IWAOs to be employed as sensing platforms, which confer versatility, robustness, and mass production capabilities besides high sensitivity on conventional bulk optodes, as well as the usefulness of such dyes in developing ion-selective membranes in combination with a selective ionophore. The sensor integration as a detector in a flow injection system (FIA) was proposed to obtain an automated, simple, and sufficiently reproducible (RSD <5%) analytical methodology with a sample throughput of 55 h(-1). Very sensitive optodes were obtained, and detection limits on the order of 20 ppb were achieved. Because of the ionophore employed, the optode system showed excellent selectivity over alkali and alkaline-earth metals with the exception of samples containing lead and cadmium ions, where the membrane responded to both analytes. The proposed procedure combines all the advantages of the FIA systems, the simplicity of optical detection, ion recognition selectivity, and sensitivity of ketocyanine dyes, and the features achieved using the integrated device, which comprise an improved sensitivity and short response times as well as robustness, easy handling, and mass production.
开发了一种技术改进的集成波导吸光度光极(IWAO)的首个原型,并使用基于新型H⁺选择性酮菁染料和镉离子载体的膜进行了测试。它采用弯曲而非直线型平面波导进行设计。结果表明,新型IWAO适合用作传感平台,除了对传统体光极具有高灵敏度外,还具有通用性、稳健性和大规模生产能力,以及此类染料与选择性离子载体结合用于开发离子选择性膜的实用性。有人提议将该传感器集成到流动注射系统(FIA)中作为检测器,以获得一种自动化、简单且重现性足够高(相对标准偏差<5%)的分析方法,样品通量为55 h⁻¹。获得了非常灵敏的光极,检测限达到20 ppb左右。由于所采用的离子载体,该光极系统对碱金属和碱土金属具有出色的选择性,但含有铅和镉离子的样品除外,在这些样品中,该膜对两种分析物都有响应。所提出的方法结合了FIA系统的所有优点、光学检测的简便性、离子识别选择性和酮菁染料的灵敏度,以及使用集成装置所实现的特性,包括提高的灵敏度、较短的响应时间以及稳健性、易于操作和大规模生产。