Ge Cuicui, Lao Fang, Li Wei, Li Yufeng, Chen Chunying, Qiu Yang, Mao Xueying, Li Bai, Chai Zhifang, Zhao Yuliang
Laboratory for Bio-Environmental Effects of Nanomaterials and Nanosafety, Institute of High Energy Physics, Chinese Academy of Science, Beijing 100049, PR China.
Anal Chem. 2008 Dec 15;80(24):9426-34. doi: 10.1021/ac801469b.
Metal impurities in carbon nanotubes (CNTs) are undesirable for their uses in diverse applications, for instance, they may potentially have a negative health impact when using in biomedical fields. However, so far there is a lack of analysis methods able to quantify metallic impurities in CNTs. In this paper, using the neutron activation analysis (NAA) technique as a nondestructive standard quantification method and inductively coupled plasma mass spectrometry (ICPMS) as a practical approach, we established an analytical method for quantitative determination of metallic impurities in CNTs. ICPMS, one of the most sensitive analytical techniques used for coincident multielement measurements, has become a common tool in many laboratory, and thus it is easily available and a good selection for determining the metal impurities in CNTs. However, because of their extremely stable structure and the encapsulated metals in the defect structure, CNTs must undergo special pretreatments before ICPMS. We investigated different sample pretreatment procedures for ICPMS analysis, including dry ashing coupled with acid extraction, wet digestion, and a combination of dry ashing with acid digestion. With the reference data from the nondestructive analytical method of NAA, we found that the quantitative determination of metal impurities in CNTs is highly dependent on the sample pretreatment in which the conditions are largely different from those used for conventional biological samples or environmental materials. This paper not only provides the practical method and analysis conditions for quantifying the metal impurities of CNTs but also the first protocol for pretreatment processes of CNT samples.
碳纳米管(CNT)中的金属杂质不利于其在各种应用中的使用,例如,当在生物医学领域使用时,它们可能会对健康产生潜在的负面影响。然而,到目前为止,缺乏能够量化碳纳米管中金属杂质的分析方法。在本文中,我们使用中子活化分析(NAA)技术作为一种无损标准定量方法,并将电感耦合等离子体质谱(ICPMS)作为一种实用方法,建立了一种定量测定碳纳米管中金属杂质的分析方法。ICPMS是用于同时进行多元素测量的最灵敏分析技术之一,已成为许多实验室的常用工具,因此很容易获得,是测定碳纳米管中金属杂质的一个不错选择。然而,由于其极其稳定的结构以及缺陷结构中包裹的金属,碳纳米管在进行ICPMS分析之前必须经过特殊的预处理。我们研究了用于ICPMS分析的不同样品预处理程序,包括干灰化结合酸萃取、湿法消解以及干灰化与酸消解相结合的方法。通过无损分析方法NAA的参考数据,我们发现碳纳米管中金属杂质的定量测定高度依赖于样品预处理,而预处理条件与用于常规生物样品或环境材料的条件有很大不同。本文不仅提供了量化碳纳米管金属杂质的实用方法和分析条件,还提供了碳纳米管样品预处理过程的首个方案。