López-Heras Isabel, Madrid Yolanda, Cámara Carmen
Department of Analytical Chemistry, Faculty of Chemistry, Complutense University of Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain.
Department of Analytical Chemistry, Faculty of Chemistry, Complutense University of Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain.
Talanta. 2014 Jun;124:71-8. doi: 10.1016/j.talanta.2014.02.029. Epub 2014 Feb 22.
In this work, we proposed an analytical approach based on asymmetrical flow field-flow fractionation combined to an inductively coupled plasma mass spectrometry (AsFlFFF-ICP-MS) for rutile titanium dioxide nanoparticles (TiO2NPs) characterization and quantification in cosmetic and food products. AsFlFFF-ICP-MS separation of TiO2NPs was performed using 0.2% (w/v) SDS, 6% (v/v) methanol at pH 8.7 as the carrier solution. Two problems were addressed during TiO2NPs analysis by AsFlFFF-ICP-MS: size distribution determination and element quantification of the NPs. Two approaches were used for size determination: size calibration using polystyrene latex standards of known sizes and transmission electron microscopy (TEM). A method based on focused sonication for preparing NPs dispersions followed by an on-line external calibration strategy based on AsFlFFF-ICP-MS, using rutile TiO2NPs as standards is presented here for the first time. The developed method suppressed non-specific interactions between NPs and membrane, and overcame possible erroneous results obtained when quantification is performed by using ionic Ti solutions. The applicability of the quantification method was tested on cosmetic products (moisturizing cream). Regarding validation, at the 95% confidence level, no significant differences were detected between titanium concentrations in the moisturizing cream prior sample mineralization (3865±139 mg Ti/kg sample), by FIA-ICP-MS analysis prior NPs extraction (3770±24 mg Ti/kg sample), and after using the optimized on-line calibration approach (3699±145 mg Ti/kg sample). Besides the high Ti content found in the studied food products (sugar glass and coffee cream), TiO2NPs were not detected.
在本研究中,我们提出了一种基于不对称流场-流分馏与电感耦合等离子体质谱联用(AsFlFFF-ICP-MS)的分析方法,用于表征和定量化妆品和食品中的金红石型二氧化钛纳米颗粒(TiO₂ NPs)。使用0.2%(w/v)十二烷基硫酸钠、6%(v/v)甲醇、pH 8.7的溶液作为载体溶液,通过AsFlFFF-ICP-MS对TiO₂ NPs进行分离。在通过AsFlFFF-ICP-MS分析TiO₂ NPs的过程中,解决了两个问题:纳米颗粒的尺寸分布测定和元素定量。采用了两种尺寸测定方法:使用已知尺寸的聚苯乙烯乳胶标准品进行尺寸校准和透射电子显微镜(TEM)。本文首次提出了一种基于聚焦超声处理制备纳米颗粒分散体的方法,随后采用基于AsFlFFF-ICP-MS的在线外标策略,以金红石型TiO₂ NPs作为标准品。所开发的方法抑制了纳米颗粒与膜之间的非特异性相互作用,并克服了使用离子钛溶液进行定量时可能获得的错误结果。在化妆品(保湿霜)上测试了定量方法的适用性。关于验证,在95%置信水平下,在保湿霜样品矿化前(3865±139 mg Ti/kg样品)、纳米颗粒提取前通过流动注射-电感耦合等离子体质谱分析(3770±24 mg Ti/kg样品)以及使用优化的在线校准方法后(3699±145 mg Ti/kg样品),未检测到钛浓度之间的显著差异。除了在所研究的食品(糖玻璃和咖啡奶油)中发现的高钛含量外,未检测到TiO₂ NPs。