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日用化学工业(中英文) ›› 2026, Vol. 56 ›› Issue (8): 1111-1117.doi: 10.3969/j.issn.2097-2806.2026.08.015

• 分析与检测 • 上一篇    下一篇

基于复合表面活性剂提取的SP-ICP-MS法测定油包水防晒剂中纳米氧化锌

宋玉函*(),徐羽翀,杨阳,张雪青,刘真,冯敬敬   

  1. 南京市食品药品监督检验院江苏 南京 211100
  • 收稿日期:2025-10-11 修回日期:2026-07-31 出版日期:2026-08-22 发布日期:2026-09-02
  • 基金资助:
    江苏省药品监督管理局药品监管科学科研计划项目(202352);江苏省市场监督管理局科技项目(Kj2025057);江苏省药品监督管理局药品监管科学科研计划项目(202464);江苏省药品监督管理局药品监管科学科研计划项目(202435);南京市市场监督管理局科技计划项目(Kj2024033)

Dtermination of ZnO nanoparticles in water-in-oil sunscreen by SP-ICP-MS based on extraction with a surfactant-polymer mixture

Yuhan Song*(),Yuchong Xu,Yang Yang,Xueqing Zhang,Zhen Liu,Jingjing Feng   

  1. Nanjing Institute for Food and Drug Control, Nanjing, Jiangsu 211100, China
  • Received:2025-10-11 Revised:2026-07-31 Online:2026-08-22 Published:2026-09-02
  • Contact: *E-mail: 87431008@qq.com.

摘要:

建立了一种基于十二烷基硫酸钠(SDS)与聚乙二醇-聚丙二醇(25/30)共聚物(PEG-PPG-25/30)复合表面活性剂提取的超声辅助结合单颗粒电感耦合等离子体质谱(Single particle-inductively coupled plasma-mass spectrometry,SP-ICP-MS)的分析方法,用于同步测定油包水(W/O)型防晒霜中纳米氧化锌(ZnONPs)的粒径分布及颗粒数量。该复合分散体系通过静电排斥与空间位阻的协同作用,有效破解了W/O乳液的稳定结构,显著提升了ZnONPs的提取效率与分散稳定性。通过对pH值、超声时间及稀释倍数等关键参数的系统优化,确定最佳分析条件为:pH为7.0、超声处理时间为30 min、颗粒数量在1.6×108~1.2×109 颗粒数/L范围内。方法学验证结果显示,ZnONPs标准物质的测定值与参考值高度一致;方法的粒径检出限为7 nm,颗粒数量检出限为2.34×103 颗粒数/L,加标回收率为109.7%±3.5%,且ZnONPs标准物质的测定值与参考值高度吻合,显示出优异的准确性、灵敏度与重现性。该研究为解决复杂基质中纳米颗粒的提取与准确定量难题提供了可靠的前处理策略。所建立的方法操作简便、分析快速,适用于W/O型防晒产品中ZnONPs的高精度、高灵敏度检测。

关键词: 单颗粒-电感耦合等离子质谱, 氧化锌纳米颗粒, 表面活性剂, 防晒剂

Abstract:

A method for analysis of oil-in-water (W/O) sunscreen formulations containing nano zinc oxide (ZnONPs) was established. The mixture of sodium dodecyl sulfate (SDS) and polyethylene glycol-polypropylene glycol copolymer (PEG-PPG-25/30) was used for extraction, and then the extracted sample was analyzed by ultrasound-assisted single particle inductively coupled plasma mass spectrometry (SP-ICP-MS). This method enabled the determination of particle size distribution and particle number concentration of ZnONPs. The surfactant-polymer mixture could effectively break the stable structure of W/O emulsions through synergistic effects of electrostatic repulsion and steric hindrance, thus significantly enhancing the extraction efficiency and dispersion stability of ZnONPs. Key parameters such as pH value, ultrasonic treatment time, and dilution factor were optimized, and the optimized analytical conditions were as follows: pH of 7.0, ultrasonic processing for 30 min, and a range of particle testing concentration from 1.6×108 to 1.2×109 particles/L. Results of methodological validation indicated that the measured values for ZnONP standard materials were highly consistent with reference values; specifically, the detection limit for particle size was 7 nm while the detection limit for particle number concentration was 2.34×103 particles/L. The spiked recovery was found to be 109.7%±3.5%, further confirming the excellent accuracy, sensitivity, and reproducibility in measurement. This work provided a reliable pre-treatment strategy to address challenges associated with extracting and accurately quantifying nanoparticles in complex matrices. The established method was straightforward in operation and rapid in analysis, making it suitable for high-precision and high-sensitivity detection of ZnONPs in W/O sunscreen products.

Key words: single particle inductively coupled plasma mass spectrometry, zinc oxide nanoparticle, surfactant, sunscreen

中图分类号: 

  • TQ423