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毛细管电泳与电喷雾电离多重离子淌度谱联用。

Coupling of capillary electrophoresis with electrospray ionization multiplexing ion mobility spectrometry.

机构信息

College of Chemical Engineering, Xiangtan University, Xiangtan, Hunan, P. R. China.

College of Pharmacy, Southwest MinZu University, Chengdu, P. R. China.

出版信息

Electrophoresis. 2019 Jul;40(12-13):1639-1647. doi: 10.1002/elps.201800462. Epub 2019 Apr 4.

Abstract

In this work, ion mobility spectrometry (IMS) function as a detector and another dimension of separation was coupled with CE to achieve two-dimensional separation. To improve the performance of hyphenated CE-IMS instrument, electrospray ionization correlation ion mobility spectrometry is evaluated and compared with traditional signal averaging data acquisition method using tetraalkylammonium bromide compounds. The effect of various parameters on the separation including sample introduction, sheath fluid of CE and drift gas, data acquisition method of IMS were investigated. The experimental result shows that the optimal conditions are as follows: hydrodynamic sample injection method, the electrophoresis voltage is 10 kilo volts, 5 mmol/L ammonium acetate buffer solution containing 80% acetonitrile as both the background electrolyte and the electrospray ionization sheath fluid, the ESI liquid flow rate is 4.5 μL/min, the drift voltage is 10.5 kilo volts, the drift gas temperature is 383 K and the drift gas flow rate is 300 mL/min. Under the above conditions, the mixture standards of seven tetraalkylammoniums can be completely separated within 10 min both by CE and IMS. The linear range was 5-250 μg/mL, with LOD of 0.152, 0.204, 0.277, 0.382, 0.466, 0.623 and 0.892 μg/mL, respectively. Compared with traditional capillary electrophoresis detection methods, the developed CE-ESI-IMS method not only provide two sets of qualitative parameters including electrophoresis migration time and ion drift time, ion mobility spectrometer can also provide an additional dimension of separation and could apply to the detection ultra-violet transparent compounds or none fluorescent compounds.

摘要

在这项工作中,离子迁移谱(IMS)作为检测器,与 CE 耦合形成二维分离。为了提高 CE-IMS 仪器的性能,评估了电喷雾电离相关离子迁移谱,并与使用四烷基溴化铵化合物的传统信号平均数据采集方法进行了比较。考察了包括样品引入、CE 鞘液和漂移气体在内的各种参数对分离的影响,并对 IMS 的数据采集方法进行了研究。实验结果表明,最佳条件如下:采用流体力学进样方式,电泳电压为 10 千伏,5 mmol/L 乙酸铵缓冲溶液(含 80%乙腈)作为背景电解质和电喷雾电离鞘液,ESI 流速为 4.5 μL/min,漂移电压为 10.5 千伏,漂移气体温度为 383 K,漂移气体流速为 300 mL/min。在上述条件下,CE 和 IMS 可在 10 min 内完全分离七种四烷基铵的混合物标准品。线性范围为 5-250 μg/mL,LOD 分别为 0.152、0.204、0.277、0.382、0.466、0.623 和 0.892 μg/mL。与传统的毛细管电泳检测方法相比,所开发的 CE-ESI-IMS 方法不仅提供了电泳迁移时间和离子漂移时间两套定性参数,离子迁移谱仪还提供了额外的分离维度,可用于检测紫外透明化合物或无荧光化合物。

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