State Key Laboratory of Geological Processes and Mineral Resources, School of Earth Sciences, China University of Geosciences, Wuhan 430074, China.
Anal Chem. 2022 May 24;94(20):7200-7209. doi: 10.1021/acs.analchem.1c05609. Epub 2022 May 12.
In this study, we measure the absolute isotope ratios of ytterbium (Yb) by multi-collector inductively coupled plasma mass spectrometry (MC-ICP-MS) using an optimized regression model for mass bias correction. A rhenium (Re) reference material (NIST SRM 3143), which has been characterized previously, is selected as a primary calibrator to calibrate the absolute Yb isotope ratios for three Yb materials (GSB, Alfa Yb, and GBW). The three-isotope plot for all collected data indicates that the results of Yb isotope ratios obtained are not affected by any polyatomic interferences and the mass-independent isotopic fractionation. Furthermore, the recalibrated Hf historical isotope ratios by using the absolute Yb isotopic composition obtained in this study for the isobaric interference correction on Hf isotopes are in agreement with the original historical values. This work has further demonstrated the applicability of the regression model for the calibrated measurements of absolute isotope ratios using MC-ICP-MS. The three mono-elemental Yb standard solutions are thus proposed as the reference materials for Yb isotope ratio measurements in environmental and geoscience applications.
在本研究中,我们通过多接收电感耦合等离子体质谱(MC-ICP-MS)测量了镱(Yb)的绝对同位素比值,并使用优化的回归模型进行质量偏差校正。选择先前经过表征的铼(Re)参考物质(NIST SRM 3143)作为主要校准标本来校准三种 Yb 材料(GSB、Alfa Yb 和 GBW)的绝对 Yb 同位素比值。所有收集数据的三同位素图表明,获得的 Yb 同位素比值结果不受任何多核素干扰和质量无关的同位素分馏的影响。此外,使用本研究中获得的绝对 Yb 同位素组成对 Hf 同位素进行等原子干扰校正后,重新校准的 Hf 历史同位素比值与原始历史值一致。这项工作进一步证明了回归模型在使用 MC-ICP-MS 进行绝对同位素比值校准测量中的适用性。因此,三种单元素 Yb 标准溶液被提议作为环境和地球科学应用中 Yb 同位素比测量的参考物质。