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A high-efficiency cross-flow micronebulizer interface for capillary electrophoresis and inductively coupled plasma mass spectrometry

机译:高效的横流微雾化器接口,用于毛细管电泳和电感耦合等离子体质谱

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摘要

A pneumatic nebulizer interface for capillary electrophoresis (CE) and inductively coupled plasma mass spectrometry (ICPMS) is reported. The interface is constructed using a high-efficiency cross-flow micronebulizer (RECBM and has the following features. (1) Makeup solutions can be fed to the interface by nebulizer self-aspiration and liquid gravity pressurization. (2) The liquid dead volume of the interface is similar to 65 nL, much smaller than those (200-2500 nL) reported for other interfaces. (3) The interface can be stably operated at a liquid flow rate down to 5 muL/min with a high analyte transport efficiency up to 95% to the plasma and (4) does not induce noticeable laminar flow in the CE capillary at typical nebulizer gas flow rates of 0.8-1.2 L/min. Because of these features, baseline resolution of 10 lanthanides with a CE-ICPMS system using the HECFMN interface is achieved, and detection limits and peak asymmetry are 0.05-1 mug/L and 0.93-1.23, respectively, improved significantly over those reported previously for a CE-ICPMS system using a high-efficiency nebulizer interface. Peak precision for the 10 lanthanides is in the range of 6.2-12.3% RSD (N = 5). Peak widths are from 9.1 s for La-139 to 17.9 s for Lu-175. The effects of nebulizer gas flow rate, makeup solution flow rate, and spray chamber volume on CE-ICPMS signal intensity and separation are also evaluated for the HEMIN interface by the separation of Cr3+ and Cr2O72-.
机译:报道了一种用于毛细管电泳(CE)和电感耦合等离子体质谱(ICPMS)的气动雾化器接口。该界面使用高效的错流微雾化器(RECBM)构造,具有以下特点:(1)可以通过雾化器的自吸和液体重力加压将补给溶液供入界面中;(2)液体的死体积该界面类似于65 nL,远小于其他界面报道的(200-2500 nL)(3)该界面可以以低至5μL/ min的液体流速稳定运行,并具有较高的分析物传输效率至血浆的95%,(4)在0.8-1.2 L / min的典型雾化器气体流速下,不会在CE毛细管中引起明显的层流,由于这些特性,使用CE-ICPMS系统可分离10种镧系元素使用HECFMN界面实现了检测限和峰不对称性分别为0.05-1杯/升和0.93-1.23,与以前报道的使用高效雾化器接口的CE-ICPMS系统相比有了显着提高。 10 lantha氮化物的相对标准偏差(RSD)为6.2-12.3%(N = 5)。峰宽从La-139的9.1 s到Lu-175的17.9 s。还通过分离Cr3 +和Cr2O72-对HEMIN界面评估了雾化器气体流速,补充溶液流速和雾化室体积对CE-ICPMS信号强度和分离的影响。

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