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首页> 外文期刊>Applied Spectroscopy Reviews: An International Journal of Principles, Methods, and Applications >Interfacing microfluidic handling with spectroscopic detection for real-life applications via the lab-on-valve platform: A review
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Interfacing microfluidic handling with spectroscopic detection for real-life applications via the lab-on-valve platform: A review

机译:通过阀上实验室平台将微流体处理与光谱检测接口连接以用于实际应用

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摘要

One of the current needs within the analytical spectrometric community is the development of straightforward and cost-effective, yet rugged, sample processing procedures aimed at precluding both spectroscopic and nonspectroscopic matrix interferences while fostering concomitant sample enrichment. Illustrated via selected representative examples, this review presents and discusses the current state of the art in implementing miniaturised and automated sample treatments for environmental and biochemical assays via microfluidic systems exploiting the lab-on-valve (LOV) platform in hyphenation with syringe pump propelling devices as a front end to a plethora of spectroscopic detection schemes including ultraviolet-visible (UV-Vis) spectrometry, spectrofluorimetry, chemiluminescence, atomic absorption spectrometry (AAS), atomic flourescence spectrometry (AFS), and inductively coupled plasma-atomic emission spectrometry/mass spectrometry (ICP-AES/MS). In contrast to lab-on-a-chip units, the versatile configuration of the micromachined LOV readily facilitates the implementation of on-line unit operations at will encompassing not merely the introduction of minute, well-defined volumes of sample followed by chemical derivatization, but the potential for accommodation of solid-phase extraction, hydride/vapor generation, precipitation/coprecipitation, and bead injection protocols with no need for chip redesign.
机译:分析光谱学界当前的需求之一是开发简单,经济高效,但坚固耐用的样品处理程序,旨在排除光谱和非光谱基质干扰,同时促进样品的富集。通过选定的代表性实例进行说明,本次综述介绍并讨论了通过微流控系统实施微型化和自动化样品处理以进行环境和生化测定的最新技术,该系统利用活门实验室(LOV)平台通过注射器泵推进装置进行连接作为多种光谱检测方案的前端,包括紫外可见光谱(UV-Vis),荧光光谱,化学发光,原子吸收光谱(AAS),原子荧光光谱(AFS)和电感耦合等离子体原子发射光谱/质量光谱法(ICP-AES / MS)。与芯片实验室单元相比,微机械LOV的多功能配置可轻松促进在线单元操作的随意实施,不仅包括引入微量,明确定义的样品量,然后进行化学衍生化,但是无需进行芯片重新设计即可容纳固相萃取,氢化物/蒸气产生,沉淀/共沉淀和珠粒注入方案。

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