首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A non-invasive analysis method for on-chip spectrophotometric detection using liquid-core waveguiding within a 3D architecture
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A non-invasive analysis method for on-chip spectrophotometric detection using liquid-core waveguiding within a 3D architecture

机译:一种在3D架构内使用液芯波导进行片上分光光度检测的非侵入性分析方法

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The on-chip measurement of absorbing species has proven to be challenging,particularly with respect to the sample pathlengths available in a miniaturised by system.This paper demonstrates how the principles of total internal reflection can be utilised to form a liquid-core waveguide along a single microfluidic channel,increasing the sampling pathlength to 5 mm while maintaining a detection volume of <=1muL.This was achieved using the Teflon fluoropolymers PTFE,FEP and AF as cladding for the liquid-core waveguide.In conjunction with a 3D chip architecture,the use of the liquid-core waveguide enables more efficient use of the probing light beam along with easy and effective coupling of the source,microfluidic chip and the detection system.The confirmation that waveguiding was occurring was successfully demonstrated and the subsequent spectrophotometric analysis of crystal violet provided a linear calibaration with reporducibility (<2.4%RSD) and limits of detection (<1.3muM),comparable to absorbance measurements made with a standard UV-Vis spectrophotometer.
机译:芯片上吸收物质的测量已被证明具有挑战性,特别是在小型化系统中可用的样品路径长度方面。本文演示了如何利用全内反射原理沿光轴形成液芯波导。单个微流体通道,将采样路径长度增加到5 mm,同时保持<=1μL的检测体积。这是通过使用铁氟龙含氟聚合物PTFE,FEP和AF作为液芯波导的包层实现的。结合3D芯片架构,液芯波导的使用可以更有效地利用探测光束,并且可以轻松有效地耦合光源,微流控芯片和检测系统。成功地证实了发生了波导的确认,并随后对晶体进行了分光光度分析紫色提供了线性校准,具有可重复性(<2.4%RSD)和检测限(<1.3μM),可与用标准的紫外可见分光光度计进行吸光度测量。

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