Li Kangcong, Gao Yan, Li Xiuqin, Zhang Yan, Zhu Benfeng, Zhang Qinghe
Division of Chemical Metrology and Analytical Science, National Institute of Metrology, Beijing 100029, China.
College of Materials and Chemistry, China Jiliang University, Hangzhou 310018, China.
Molecules. 2024 Feb 1;29(3):680. doi: 10.3390/molecules29030680.
Organophosphorus flame retardants (OPFRs) have been widely used in polymeric materials owing to their flame retardant and plasticizing effects. Investigating the fragmentation pathway of OPFRs is of great necessity for further discovering and identifying novel pollutants using orbitrap-based high-resolution mass spectrometry (HRMS). A total of 25 OPFRs, including alkyl, halogenated, and aromatic types, were analyzed in this study. The fragmentation pathways of the OPFRs were investigated using orbitrap-based HRMS with high-energy collision dissociation (HCD) in positive mode. The major fragmentation pathways for the three types of OPFRs are greatly affected by the substituents. In detail, the alkyl and halogenated OPFRs underwent three McLafferty hydrogen rearrangements, wherein the substituents were gradually cleaved to form the structurally stable [HPO] (/ = 98.9845) ions. In contrast, the aromatic OPFRs would cleave not only the C-O bond but also the P-O bond, depending on the substituents, to form fragment ions such as [CHO] (/ = 95.0495) or [CH] (/ = 91.0530), among others. Using HRMS improved the accuracy of fragment ion identification, and the pathway became more evident. These fragmentation laws can provide identification information in pollutant screening work and theoretical references for the structural characterization of compounds with diverse substituent structures.
有机磷阻燃剂(OPFRs)因其阻燃和增塑作用而被广泛应用于聚合材料中。利用基于轨道阱的高分辨率质谱(HRMS)进一步发现和识别新型污染物,研究OPFRs的裂解途径非常必要。本研究共分析了25种OPFRs,包括烷基、卤代和芳香族类型。采用基于轨道阱的HRMS在正模式下通过高能碰撞解离(HCD)研究了OPFRs的裂解途径。这三种类型的OPFRs的主要裂解途径受取代基的影响很大。具体而言,烷基和卤代OPFRs经历了三次麦克拉弗蒂氢重排,其中取代基逐渐裂解形成结构稳定的[HPO](/ = 98.9845)离子。相比之下,芳香族OPFRs不仅会裂解C-O键,还会根据取代基的情况裂解P-O键,形成诸如[CHO](/ = 95.0495)或[CH](/ = 91.0530)等碎片离子。使用HRMS提高了碎片离子识别的准确性,且裂解途径变得更加明显。这些裂解规律可为污染物筛选工作提供识别信息,并为具有不同取代基结构的化合物的结构表征提供理论参考。