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首页> 外文期刊>Analytical chemistry >Online and Splitless NanoLC × CapillaryLC with Quadrupole/Time-of-Flight Mass Spectrometric Detection for Comprehensive Screening Analysis of Complex Samples
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Online and Splitless NanoLC × CapillaryLC with Quadrupole/Time-of-Flight Mass Spectrometric Detection for Comprehensive Screening Analysis of Complex Samples

机译:具有四极杆/飞行时间质谱检测功能的在线和不分流NanoLC×CapillaryLC用于复杂样品的综合筛选分析

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摘要

A novel multidimensional separation system based on online comprehensive two-dimensional liquid chromatography and hybrid high-resolution mass spectrometry has been developed for the qualitative screening analysis and characterization of complex samples. The core of the system is a consistently miniaturized two-dimensional liquid chromatography that makes the rapid second dimension compatible with mass spectrometry without the need for any flow split. Elevated temperature, ultrahigh pressure, and a superficially porous sub-3-μm stationary phase provide a fast second dimension separation and a sufficient sampling frequency without a first dimension flow stop. A highly loadable porous graphitic carbon stationary phase is employed in the first dimension to implement large volume injections that help countervailing dilution caused by the sampling process between the two dimensions. Exemplarily, separations of a 99-component standard mixture and a complex wastewater sample were used to demonstrate the performance of the dual-gradient system. In the second dimension, 30 s gradients at a cycle time of 1 min were employed. One multidimensional separation took 80-90 min (~120 min including extended hold and re-equilibration in the first dimension). This approach represents a cost-efficient alternative to online LC × LC strategies working with conventionally sized columns in the rapid second dimension, as solvent consumption is drastically decreased and analytes still are detectable at environmentally relevant concentrations.
机译:开发了一种基于在线综合二维液相色谱和混合高分辨率质谱的新型多维分离系统,用于复杂样品的定性筛选分析和表征。该系统的核心是一致地小型化的二维液相色谱仪,它使快速的第二维色谱与质谱兼容,而无需进行任何分流。升高的温度,超高压和表面多孔的3μm以下固定相可提供快速的二维分离和足够的采样频率,而无需停止第一维流动。在第一维中使用了高负载多孔石墨碳固定相,以实现大体积进样,这有助于抵消由二维之间的采样过程引起的稀释。示例性地,使用99组分标准混合物和复杂废水样品的分离来证明双梯度系统的性能。在第二维中,采用1分钟循环时间的30 s梯度。一个多维分离过程耗时80-90分钟(〜120分钟,包括扩展的保持和在第一维中的重新平衡)。这种方法代表了在线LC×LC策略在在线快速二维中使用常规尺寸色谱柱的一种经济高效的替代方法,因为溶剂消耗量大大减少,而且在环境相关浓度下仍可检测到分析物。

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