首页> 外文期刊>Journal of Oleo Science >High-resolution Kendrick Mass Defect Analysis of Poly(ethylene oxide)-based Non-ionic Surfactants and Their Degradation Products
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High-resolution Kendrick Mass Defect Analysis of Poly(ethylene oxide)-based Non-ionic Surfactants and Their Degradation Products

机译:聚环氧乙烷基非离子表面活性剂及其降解产物的高分辨率肯德里克质量缺陷分析

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摘要

Matrix assisted laser desorption ionization (MALDI) high-resolution mass spectrometry (HRMS) and the recently introduced high-resolution Kendrick mass defect (HRKMD) analysis are combined to thoroughly characterize non-ionic surfactants made of a poly(ethylene oxide) (PEO) core capped by esters of fatty acids. A PEO monostearate surfactant is first analyzed as a proof of principle of the HRKMD analysis conducted with a fraction of EO as the base unit (EO/X with X being an integer) in lieu of EO for a regular KMD analysis. Data visualization is greatly enhanced and the distributions detected in the MALDI mass spectrum are assigned to a pristine (H, OH)-PEO as well as mono- and di-esterified PEO chains with palmitate and stearate end-groups in HRKMD plots computed with EO/45. The MALDI-HRMS/HRKMD analysis is then successfully applied to the more complex case of ethoxylated hydrogenated castor oil (EHCO) found to contain a large number of hydrogenated ricinoleate moieties (up to 14) in its HRKMD plot computed with EO/43, departing from the expected triglyceride structure. The exhaustiveness of the MALDI-HRMS/HRKMD strategy is validated by comparing the so-obtained fingerprints with results from alternative techniques (electrospray ionization MS, size exclusion and liquid adsorption chromatography, ion mobility spectrometry). Finally, aged non-ionic surfactants formed upon hydrolytic degradation are analyzed by MALDI-HRMS/HRKMD to easily assign the degradation products and infer the associated degradation routes. In addition to the hydrolysis of the ester groups observed for EHCO, chain scissions and new polar end-groups are observed in the HRKMD plot of PEO monostearate arising from a competitive oxidative ageing.
机译:结合基质辅助激光解吸电离(MALDI)高分辨率质谱(HRMS)和最近推出的高分辨率Kendrick质量缺陷(HRKMD)分析,以彻底表征由聚环氧乙烷(PEO)制成的非离子表面活性剂核心被脂肪酸的酯封端。首先分析PEO单硬脂酸酯表面活性剂,作为HRKMD分析原理的证明,以一部分EO为基本单位(EO / X,X为整数)代替EO进行常规KMD分析。极大地增强了数据可视化,并且在MALDI质谱图中检测到的分布分配给了原始(H,OH)-PEO以及在EO计算的HRKMD图中具有棕榈酸酯和硬脂酸酯端基的原始和酯化PEO链/ 45。然后将MALDI-HRMS / HRKMD分析成功应用于更复杂的乙氧基化氢化蓖麻油(EHCO)案例,该案例发现在用EO / 43计算的HRKMD图中包含大量氢化蓖麻油酸酯部分(最多14个),从预期的甘油三酸酯结构。 MALDI-HRMS / HRKMD方法的穷举性是通过将如此获得的指纹图与其他技术(电喷雾电离质谱,尺寸排阻和液相吸附色谱,离子迁移谱)的结果进行比较来验证的。最后,通过MALDI-HRMS / HRKMD分析在水解降解后形成的老化的非离子表面活性剂,从而轻松确定降解产物并推断相关的降解途径。除了在EHCO中观察到的酯基水解外,在竞争性氧化老化过程中,PEO单硬脂酸酯的HRKMD图中还观察到了链断裂和新的极性端基。

著录项

  • 来源
    《Journal of Oleo Science》 |2017年第9期|1061-1072|共12页
  • 作者单位

    National Institute of Advanced Industrial Science and Technology (AIST), Research Institute for Sustainable Chemistry, Tsukuba, JAPAN;

    Shiseido Global Innovation Center, Yokohama, JAPAN;

    Shiseido Global Innovation Center, Yokohama, JAPAN;

    Nagoya Institute of Technology, Graduate School of Engineering, Life Science and Applied Chemistry, Nagoya, JAPAN;

    Nagoya Institute of Technology, Graduate School of Engineering, Life Science and Applied Chemistry, Nagoya, JAPAN;

    Nagoya Institute of Technology, Graduate School of Engineering, Life Science and Applied Chemistry, Nagoya, JAPAN;

    Nagoya Institute of Technology, Graduate School of Engineering, Life Science and Applied Chemistry, Nagoya, JAPAN;

    National Institute of Advanced Industrial Science and Technology (AIST), Research Institute for Sustainable Chemistry, Tsukuba, JAPAN;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Kendrick mass defect; high-resolution mass spectrometry; poly(ethylene oxide); non-ionic surfactant; hydrolytic degradation; castor oil; stearate;

    机译:肯德里克块状缺陷;高分辨率质谱聚环氧乙烷非离子表面活性剂水解降解;蓖麻油;硬脂酸盐;

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