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Comprehensive Two-Dimensional Separation of Hydroxylated Polybrominated Diphenyl Ethers by Ultra-Performance Liquid Chromatography Coupled with Ion Mobility-Mass Spectrometry

机译:超高效液相色谱-离子淌度-质谱联用技术对羟基化多溴联苯醚进行二维二维分离

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摘要

A comprehensive two-dimensional system coupling ultra-performance liquid chromatography (UPLC) and ion mobility-mass spectrometry (IM-MS) has been applied for the separation and analysis of hydroxylated polybrominated diphenyl ethers (OH-PBDEs). A complex mixture containing 23 OH-PBDE congeners ranging from hydroxylated monobromodiphenyl ether (OH-monoBDE) to hydroxylated octabromodiphenyl ether (OH-octaBDE) was satisfactorily separated within 16 min of analysis time. The first-dimensional reversed-phase UPLC was performed on a sub-2 mu m BEH C(18) chromatographic column using acetonitrile-water gradient elution program with a flow rate ramp. It enabled excellent chromatographic separation for both between-class and within-class OH-PBDEs based on their differences in hydrophobicity. Following the pre-ionization resolution in the first dimension, the second-dimensional IM-MS employed a hybrid electrospray quadrupole ion mobility time-of-flight mass spectrometer and added an extra post-ionization separation for between-class OH-PBDE congeners on account of their relative mobility disparity during a very short period of 8.80 ms. The orthogonality of the developed two-dimensional system was evaluated with the correlation coefficient of 0.9665 and peak spreading angle of 14.87A degrees. The peak capacity of the system was calculated to be approximately 2 and 15 times higher than that of the two dimensions used alone, respectively. The two-dimensional separation plane also contributed to the removal of background interference ions and the enhanced confidence in the characterization of OH-PBDEs of interest.
机译:结合超高效液相色谱(UPLC)和离子淌度质谱(IM-MS)的综合二维系统已用于分离和分析羟基化多溴二苯醚(OH-PBDEs)。在分析时间的16分钟内,令人满意地分离了包含23种OH-PBDE同类物的复杂混合物,其范围从羟基化的单溴二苯醚(OH-monoBDE)到羟基化的八溴二苯醚(OH-octaBDE)。使用乙腈-水梯度洗脱程序并在流速梯度下,在亚2μmBEH C(18)色谱柱上进行一维反相UPLC。基于它们之间的疏水性差异,它能够对类别间和类别内的OH-PBDEs进行出色的色谱分离。遵循第一维的电离前分辨率,第二维IM-MS采用了混合电喷雾四极离子迁移率飞行时间质谱仪,并考虑到了类OH-PBDE同类物的额外电离后分离在很短的8.80毫秒内它们的相对迁移率差异。用相关系数0.9665和峰值扩展角14.87A度评估所开发二维系统的正交性。计算得出,系统的峰值容量分别比单独使用的两个维度的峰值容量高大约2倍和15倍。二维分离平面还有助于去除背景干扰离子,并增强了对目标OH-PBDEs表征的信心。

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