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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Accurate quantification of TiO2 nanoparticles in commercial sunscreens using standard materials and orthogonal particle sizing methods for verification
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Accurate quantification of TiO2 nanoparticles in commercial sunscreens using standard materials and orthogonal particle sizing methods for verification

机译:使用标准材料和正交颗粒尺寸方法来准确定量商业防晒剂中的TiO2纳米粒子进行验证

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摘要

The implementation and enforcement of product labeling obligation as required, for example, by the cosmetic product regulation, needs simple and precise validated analytical methods. This also applies to the analysis of nanoparticles in products such as cosmetics. However, the provision of such methods is often hampered by inaccurate sizing due to unwanted nanoparticle changes, interference of matrix components with sizing and interactions between nanoparticles and analytical instrumentation. It is, therefore, necessary to develop appropriate sample preparation methods that preserve NP properties and reduce or remove matrix compounds that interfere with sizing. Further, accurate particle size analysis of samples containing unknown and possibly multiple nanoparticulate constituents is needed. In this study, we evaluated three sample preparation methods to identify and quantify TiO2 nanoparticles in sunscreens. Specifically, we used a combination of ultra-centrifugation and hexane washing, thermal destruction of the matrix, and surfactant assisted particle extraction. The method accuracy was assessed by two internal reference samples: pristine TiO2 nanoparticles (NM104) and similar TiO2 nanoparticles dispersed in a sunscreen matrix. The PSDs were determined using an asymmetrical flow field-flow fractionation hyphenated with multi-angle light scattering and inductively coupled plasma-mass spectroscopy. Particle sizing was based on size calibration of the particle retention time in the AF(4). Computation of radius of gyration from MALS data was used as an orthogonal particle sizing approach to verify ideal elution and particle size data from the AF(4) calibration. Among the three tested sample preparation methods surfactant assisted particle extraction revealed TiO2 nanoparticle recoveries of above 90% and no increase in particle size due to sample preparation was observed. Finally, the sample preparation methods were applied to two commercial sunscreen samples revealing the existence of TiO2-NP < 100 nm. Conclusively, the surfactant assisted particle extraction method can provide valid data for TiO2-NPs in sunscreen and possibly for cosmetic samples of similar matrix.
机译:根据需要实施和执行产品标签义务,例如,通过化妆品产品调节,需要简单且精确的验证的分析方法。这也适用于分析化妆品等产品中的纳米颗粒。然而,由于不需要的纳米颗粒改变,在不需要的纳米粒子变化,纳米颗粒和分析仪器之间的尺寸和相互作用的阴化,通常会通过不准确的尺寸来阻碍这种方法的提供。因此,有必要制定适当的样品制备方法,其保留NP性能并减少或除去干扰尺寸的基质化合物。此外,需要含有未知和可能多纳米颗粒成分的样品的精确粒度分析。在这项研究中,我们评估了三种样品制备方法,以鉴定和定量防晒剂中的TiO2纳米颗粒。具体地,我们使用了超离心和己烷洗涤,基质的热破坏的组合,以及表面活性剂辅助颗粒提取。通过两个内部参考样品评估方法精度:原始TiO 2纳米颗粒(NM104)和分散在防晒基质中的类似TiO2纳米颗粒。使用具有多角度光散射和电感耦合的等离子体质谱的不对称流场 - 流分馏确定PSDS。粒度基于AF(4)中的颗粒保留时间的尺寸校准。从MALS数据的计算将从中旋转半径用作正交粒度尺寸尺寸方法,以验证来自AF(4)校准的理想洗脱和粒度数据。在三种测试的样品制备方法中,表面活性剂辅助颗粒萃取显示出高于90%的TiO2纳米颗粒回收率,并且观察到由于样品制备而导致的粒度增加。最后,将样品制备方法应用于两种商业防晒样品,揭示了TiO2-NP <100nm的存在。结论,表面活性剂辅助颗粒提取方法可以为防晒剂提供有效数据,并可能用于类似基质的化妆品样品。

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