Departamento de Química, Universidade Federal de Santa Maria, Av. Roraima, 1000, 97105-900 Santa Maria, Brazil.
Departamento de Química, Universidade Federal de Santa Maria, Av. Roraima, 1000, 97105-900 Santa Maria, Brazil.
Talanta. 2019 Jan 15;192:255-262. doi: 10.1016/j.talanta.2018.09.050. Epub 2018 Sep 15.
In this work, sample preparation of carbon nanotubes (CNTs) for further determination of inorganic contaminants was investigated using a microwave-assisted wet digestion single reaction chamber system (MAWD-SRC). Analytes (Al, As, Ca, Cd, Co, Cr, Fe, La, Mg, Mo, Ni, Pb and Zn) were determined in CNTs by inductively coupled plasma optical emission spectrometry (ICP-OES) and inductively coupled plasma mass spectrometry (ICP-MS, except for Al, Ca, Fe and Mg). Method parameters were evaluated, as the mass of CNT (25-300 mg), the temperature (220-270 °C) and the time (35-75 min) of irradiation program. The accuracy was evaluated by using a certified reference material (CRM) of CNT and also by comparison of the results with those obtained using neutron activation analysis (NAA) and high resolution continuum source graphite furnace atomic absorption spectrometry with direct solid sampling (DSS-HR-CS-GF AAS). Quantitative recoveries for all elements were obtained using 275 mg of CNTs, 6 mL of 14.4 mol L HNO and 0.5 mL of 30% HO with an irradiation program of 65 min (35 min at 270 °C). No statistical difference was observed between the results obtained after the decomposition of CNTs by MAWD-SRC with those obtained by NAA and DSS-HR-CS-GF AAS. No difference was also observed for the results using the proposed method and the values for the CRM of CNT. The use of MAWD-SRC showed good performance for CNTs digestion using relatively high sample mass (up to 275 mg), contributing to low limits of quantification (LOQs) and overcoming the current limitations of sample preparation. To the best knowledge of the authors, this work reports the highest sample mass feasible to be decomposed using wet digestion for CNTs among the methods proposed in literature.
在这项工作中,使用微波辅助湿法消解单反应室系统(MAWD-SRC)研究了碳纳米管(CNT)的样品制备,以便进一步测定无机污染物。使用电感耦合等离子体发射光谱法(ICP-OES)和电感耦合等离子体质谱法(ICP-MS,Al、Ca、Fe 和 Mg 除外)测定 CNT 中的分析物(Al、As、Ca、Cd、Co、Cr、Fe、La、Mg、Mo、Ni、Pb 和 Zn)。评估了方法参数,如 CNT 的质量(25-300mg)、辐射程序的温度(220-270°C)和时间(35-75min)。通过使用 CNT 的认证参考材料(CRM)和与中子活化分析(NAA)以及使用直接固态采样的高分辨率连续光源石墨炉原子吸收光谱法(DSS-HR-CS-GF AAS)获得的结果进行比较,评估了准确性。使用 275mg CNT、6mL 14.4mol L HNO 和 0.5mL 30%HO 以及 65min 的辐射程序(35min 时为 270°C)获得所有元素的定量回收率。通过 MAWD-SRC 分解 CNT 获得的结果与 NAA 和 DSS-HR-CS-GF AAS 获得的结果之间没有观察到统计学差异。使用建议的方法和 CNT CRM 的值获得的结果之间也没有差异。MAWD-SRC 的使用显示出使用相对较高的样品质量(高达 275mg)对 CNT 进行消化的良好性能,有助于降低定量限(LOQs)并克服当前样品制备的限制。据作者所知,这是文献中报道的使用湿法消解对 CNT 进行分解时可实现的最高样品质量。