Institute of Analytical Chemistry of the Czech Academy of Sciences, Veveří 97, 602 00 Brno, Czech Republic.
Faculty of Science, Department of Analytical Chemistry, Charles University, Hlavova 8, 128 43 Prague, Czech Republic.
Anal Chem. 2023 Feb 21;95(7):3694-3702. doi: 10.1021/acs.analchem.2c04660. Epub 2023 Feb 10.
Herein, we describe the highly efficient photochemical vapor generation (PVG) of a volatile species of Ir (presumably iridium tetracarbonyl hydride) for subsequent detection by inductively coupled plasma mass spectrometry (ICPMS). A thin-film flow-through photoreactor, operated in flow injection mode, provided high efficiency following optimization of identified key PVG parameters, notably, irradiation time, pH of the reaction medium, and the presence of metal sensitizers. For routine use and analytical application, PVG conditions comprising 4 M formic acid as the reaction medium, the presence of 10 mg L Co and 25 mg L Cd as added sensitizers, and an irradiation time of 29 s were chosen. An almost 90% overall PVG efficiency for both Ir and Ir oxidation states was accompanied by excellent repeatability of 1.0% ( = 15) of the peak area response from a 50 ng L Ir standard. Limits of detection ranged from 3 to 6 pg L (1.5-3 fg absolute), dependent on use of the ICPMS reaction/collision cell. Interferences from several transition metals and metalloids as well as inorganic acids and their anions were investigated, and outstanding tolerance toward chloride was found. Accuracy of the developed methodology was verified by analysis of NIST SRM 2556 (Used Auto Catalyst) following peroxide fusion for sample preparation. Practical application was further demonstrated by the direct analysis of spring water, river water, lake water, and two seawater samples with around 100% spike recovery and no sample preparation except the addition of formic acid and the sensitizers.
在此,我们描述了一种将 Ir 的挥发性物种(推测为四羰基氢化铱)高效光化学汽相生成(PVG),以便随后通过电感耦合等离子体质谱(ICPMS)进行检测。在优化了确定的关键 PVG 参数后,采用薄膜流动式光反应器(在流动注射模式下运行),提供了高效率,这些参数包括辐照时间、反应介质的 pH 值以及金属敏化剂的存在。对于常规使用和分析应用,选择了 PVG 条件,包括 4 M 甲酸作为反应介质,添加 10 mg L Co 和 25 mg L Cd 作为敏化剂,辐照时间为 29 s。Ir 和 Ir 氧化态的总 PVG 效率接近 90%,同时峰面积响应的重复性极好,为 50 ng L Ir 标准的 1.0%(=15)。检测限范围为 3 至 6 pg L(1.5-3 fg 绝对),取决于 ICPMS 反应/碰撞池的使用。研究了几种过渡金属和类金属以及无机酸及其阴离子的干扰,发现对氯离子具有出色的耐受性。通过过氧化物熔融法进行样品制备后,对 NIST SRM 2556(用过的汽车催化剂)进行分析,验证了所开发方法的准确性。通过直接分析泉水、河水、湖水和两个海水样品,进一步证明了其实用性,除了添加甲酸和敏化剂外,无需进行样品制备,回收率约为 100%。