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Sensitive wave-mixing detectors for capillary electrophoresis and liquid chromatography

机译:用于毛细管电泳和液相色谱的灵敏混波检测器

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Abstract: A sensitive absorbance measurement method based on multi- wave mixing optical method is demonstrated as an effective detector for capillary electrophoresis or liquid chromatography. The use of a single focusing lens to focus and mix the two input beams both simplifies the optical setup and utilizes the laser power very efficiently inside a small probe volume. Hence, inexpensive low-power (mW level) lasers can be used in this nonlinear multi-photon detection method, including low-power argon ion lasers, He-Ne lasers and laser diodes. The resulting small (pL range) probe volume (laser beam overlap zone) allows convenient interfacing of this detector to capillary-based electrophoresis or chromatography separation systems. Excellent signal collection efficiency (virtually 100%) for the collimated coherent signal beam, allows detection sensitivity levels similar to those of fluorescence-based methods, and yet wave-mixing detectors are applicable for both fluorescing and non-fluorescing flowing analytes. The coherent signal beam is generated by thermally-induced refractive-index spatial gratings formed by the two input beams, and hence, the signal strength also depends on some solvent properties. The wave-mixing detector is demonstrated to be effective for trace analysis, offering advantages such as detection in very small sample volumes, remote and in situ analysis, and convenient as well as efficient alignment enhancements obtained by the introduction of optical fibers into the detector optical setup.!17
机译:摘要:提出了一种基于多波混频光学方法的灵敏吸光度测量方法,作为毛细管电泳或液相色谱检测的有效方法。使用单个聚焦透镜聚焦和混合两个输入光束既简化了光学设置,又在较小的探头体积内非常有效地利用了激光功率。因此,可以在这种非线性多光子检测方法中使用廉价的低功率(mW级)激光器,包括低功率氩离子激光器,He-Ne激光器和激光二极管。由此产生的小(pL范围)探针体积(激光束重叠区)使该检测器可以方便地与基于毛细管的电泳或色谱分离系统连接。准直相干信号束具有出色的信号收集效率(几乎为100%),其检测灵敏度水平与基于荧光的方法相似,并且混波检测器适用于荧光和非荧光流动分析物。相干信号束是由两个输入光束形成的热诱导折射率空间光栅产生的,因此,信号强度还取决于某些溶剂特性。混波检测器被证明对痕量分析有效,具有诸如在极小的样品量中进行检测,远程和原位分析以及通过将光纤引入检测器光学系统中而获得的便捷以及有效对准增强等优点。设置!17

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