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Analytical Capability of High-Time Resolution-Multiple Collector-Inductively Coupled Plasma-Mass Spectrometry for the Elemental and Isotopic Analysis of Metal Nanoparticles

机译:高速分辨率 - 多聚集体耦合等离子体质谱法的分析能力用于金属纳米粒子的元素和同位素分析

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摘要

We measured the Re/Os (185Re/188Os) and 187Os/188Os ratios from nanoparticles (NPs) using a multiple collector-inductively coupled plasma-mass spectrometer equipped with high-time resolution ion counters (HTR-MC-ICP-MS). Using the HTR-MC-ICP-MS system developed in this study, the simultaneous data acquisition of four isotopes was possible with a time resolution of up to 10 μs. This permits the quantitative analysis of four isotopes to be carried out from transient signals (e.g., <0.6 ms) emanating from the NPs. Iridium–Osmium NPs were produced from a naturally occurring Ir–Os alloy (ruthenosmiridium from Hokkaido, Japan; osmiridium from British Columbia, Canada; iridosmine from the Urals region of Russia) through a laser ablation technique, and the resulting nanoparticles were collected by bubbling water through a suspension. The 187Os/188Os ratios for individual NPs varied significantly, mainly due to the counting statistics of the 187Os and 188Os signals. Despite the large variation in the measured ratios, the resulting 187Os/188Os ratios for three Ir–Os bearing minerals, were 0.121±0.013 for Hokkaido, 0.110±0.012 for British Columbia, and 0.122±0.020 for the Urals, and these values were in agreement with the ratios obtained by the conventional laser ablation-MC-ICP-MS technique. The data obtained here provides a clear demonstration that the HTR-MC-ICP-MS technique can become a powerful tool for monitoring elemental and isotope ratios from NPs of multiple components.
机译:我们使用配备有高度分辨率离子计数器(HTR-MC-ICP-MS)的多集电极电感耦合等离子体质谱仪测量从纳米颗粒(NPS)的RE / OS(185RE / 188OS)和187OS / 188OS比率。使用本研究开发的HTR-MC-ICP-MS系统,可以同时进行四位同位素的时间,其时间分辨率高达10μs。这允许从NPS发出的瞬态信号(例如<0.6ms)中进行四位同位素的定量分析。由天然存在的IR-OS合金(来自日本北海道的ruthensmiridium)生产铱 - 锇NPS;来自加拿大不列颠哥伦比亚省的奥西里尼亚,从俄罗斯的乌拉尔地区的Iridosmine)通过激光烧蚀技术,通过鼓泡收集所得纳米颗粒悬浮液。单个NP的187秒/ 188季比率显着变化,主要是由于187OS和188OS信号的计数统计数据。尽管测量的比率有很大的变化,但是对于北海道的三种IR-OS轴承矿物产生的187℃/ 188℃比率为0.121±0.013,对于不列颠哥伦比亚省为0.110±0.012,乌拉尔的0.122±0.020,这些值与传统激光烧蚀-CM-ICP-MS技术获得的比率一致。这里获得的数据提供了清楚的演示,即HTR-MC-ICP-MS技术可以成为监测多个组件NPS的元素和同位素比的强大工具。

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