首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Optical waveguide sensors in analytical chemistry: today's instrumentation, applications and trends for future development [Review]
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Optical waveguide sensors in analytical chemistry: today's instrumentation, applications and trends for future development [Review]

机译:分析化学中的光波导传感器:当今的仪器,应用和未来发展趋势[综述]

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摘要

Current concepts for chemical and biochemical sensing based on detection with optical waveguides are reviewed. The goals are to provide a framework for classifying such sensors and to assist a designer in selecting the most suitable detection techniques and waveguide arrangements. Sensor designs are categorized on the basis of the five parameters that completely describe a light wave: its amplitude, wavelength, phase, polarization state and time-dependent waveform. In the fabrication of a successful sensor, the physical or chemical property of the determined species and the particular light wave parameter to detect it should be selected with care since they jointly dictate the sensitivity, stability, selectivity and accuracy of the eventual measurement. The principle of operation, the nature or the detected optical signal, instrumental requirements for practical applications, and associated problems are analyzed for each category of sensors. Two sorts of sensors are considered: those based on direct spectroscopic detection of the analyte, and those in which the analyte is determined indirectly through use of an analyte-sensitive reagent. Key areas of recent study, useful practical applications, and trends in future development of optical waveguide chemical and biochemical sensors are considered. [References: 420]
机译:回顾了基于光波导检测的化学和生化传感的当前概念。目的是提供一种用于对此类传感器进行分类的框架,并协助设计人员选择最合适的检测技术和波导布置。传感器的设计根据完全描述光波的五个参数进行分类:幅度,波长,相位,偏振态和与时间有关的波形。在制造成功的传感器时,应谨慎选择所确定物质的物理或化学性质以及检测它的特定光波参数,因为它们共同决定了最终测量的灵敏度,稳定性,选择性和准确性。针对每种传感器类别,分析其工作原理,光信号的性质或检测到的,实际应用中的仪器要求以及相关的问题。考虑了两种传感器:一种基于对分析物的直接光谱检测的传感器,以及通过使用对分析物敏感的试剂间接确定分析物的传感器。考虑了近期研究的关键领域,有用的实际应用以及光波导化学和生化传感器的未来发展趋势。 [参考:420]

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