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利用液相色谱/电喷雾电离四极杆飞行时间质谱法研究 β-萘酚颜料的碎裂途径。

Investigating the fragmentation pathways of β-naphthol pigments using liquid chromatography/electrospray ionization quadrupole time-of-flight mass spectrometry.

机构信息

Department of Chemistry and Industrial Chemistry, University of Pisa, Pisa, Italy.

出版信息

Rapid Commun Mass Spectrom. 2020 Jun 15;34(11):e8789. doi: 10.1002/rcm.8789.

Abstract

RATIONALE

Today, β-naphthol pigments are among the largest and most widely used classes of synthetic organic pigments. Their application fields range from textiles, food and beverages, printing inks, plastics to paint formulations. Most of the research dealing with their study using mass spectrometry focuses on developing sensitive methods for their quantification or their removal from industrial wastewater. Their qualitative recognition in formulations, whose composition is undisclosed by manufacturers, has not been tackled yet.

METHODS

The collision-induced dissociation fragmentation pathways of 10 red and orange widely used pigments of the late 19th to the early 20th centuries, belonging to the β-naphthol and Naphthol AS classes, were characterized using liquid chromatography/electrospray ionization quadrupole time-of-flight mass spectrometry in negative-ion mode.

RESULTS

The fragmentation pathways of these pigments were determined, and the pigments are discussed in relation to their chemical structures. The results were used to determine the composition in terms of the secondary components of one of our reference commercial formulations, characterized by a complex mixture of synthesis by-products.

CONCLUSIONS

By coupling the high sensitivity of high-resolution mass spectrometry with an efficient chromatographic separation optimized for the analysis of β-naphthol dyes and pigments, we provided a method for the qualitative recognition of this class of molecules in unknown formulations possibly used in different kinds of industrial and synthetic products.

摘要

原理

如今,β-萘酚颜料是最大和应用最广泛的合成有机颜料之一。它们的应用领域从纺织品、食品和饮料、印刷油墨、塑料到涂料配方等。大多数使用质谱研究它们的研究都集中在开发对其定量的敏感方法,或从工业废水中去除它们的方法。它们在配方中的定性识别,其组成并未被制造商公开,尚未得到解决。

方法

使用液相色谱/电喷雾电离四极杆飞行时间质谱仪在负离子模式下,对属于β-萘酚和萘酚 AS 类的 10 种 19 世纪末至 20 世纪初广泛使用的红色和橙色颜料进行了表征,这些颜料属于β-萘酚和萘酚 AS 类。

结果

确定了这些颜料的断裂途径,并根据其化学结构讨论了这些颜料。结果用于根据我们参考商业配方之一的次要成分来确定组成,该配方的特点是合成副产物的复杂混合物。

结论

通过将高分辨率质谱的高灵敏度与优化用于分析β-萘酚染料和颜料的高效色谱分离相结合,我们提供了一种方法,可以在未知配方中定性识别此类分子,这些配方可能用于不同类型的工业和合成产品。

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