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Trace metal impurities determination in high-purity polyimide by plasma-based techniques

机译:基于等离子体的技术,痕量金属杂质测定高纯度聚酰亚胺

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Polyimides are widely employed in the industry to produce several components that require resistance to temperature and chemical reagents. Due to the high thermo-oxidative stability and chemical inertness, the digestion of this kind of polymer is a challenging step, but mandatory for further analysis by plasma-based techniques, as inductively coupled plasma optical emission spectrometry (ICP-OES) and inductively coupled plasma mass spectrometry (ICP-MS). In the present work, a single method based on microwave-induced combustion (MIC) is proposed for polyimide digestion and further determination of 18 analytes (As, Cd, Co, Cr, Cu, Fe, K, Li, Mg, Mn, Mo, Na, Ni, Pb, Sb, Sn, Ti and V) by ICP-OES and ICP-MS. The use of NH4Cl as volatilization aid mixed with polyimide powder before the combustion was required for Cr recovery. As absorbing solution, a mixture containing HNO3 and HCl was employed providing quantitative recoveries for all analytes. The accuracy of the proposed method was evaluated by spike recovery tests, by results comparison with reference values (SEMI F48-0600 protocol) and by analysis a certified reference material (CRM) of polyethylene (EC68OK - low density polyethylene). Spike recoveries were from 94 to 108%, while the results using MIC and reference values were in an agreement (better than 94%). Regarding to CRM analysis, no statistical difference was observed (t-test, 95% of confidence level) between MIC and certified values. The proposed method allows the combustion of relative high sample mass (600 mg) with high digestion efficiency (dissolved carbon lower than 100 mg L-1) that prevents eventual interferences during the determination by plasma-based techniques, caused by carbon in digests. It was possible to use diluted acids as absorbing solution, reducing the blank values and, consequently, the limits of detection that were in ng g(-1) range even for ICP-OES analysis. The digests were suitable for analytes determination by ICP-OES and ICP-MS and
机译:聚酰亚胺广泛用于工业中,产生几种需要抗温度和化学试剂的组分。由于高热氧化稳定性和化学惰性,这种聚合物的消化是一种具有挑战性的步骤,但是强制性地通过基于等离子体的技术进一步分析,作为电感耦合等离子体光发射光谱法(ICP-OES)和电感耦合等离子体质谱(ICP-MS)。在本作本作中,提出了一种基于微波诱导燃烧(MIC)的单酰亚胺消化和进一步测定18分析物(As,Cd,Co,Cr,Cu,Fe,K,Li,Mg,Mn,Mo ,Na,Ni,Pb,Sb,Sn,Ti和V)通过ICP-OES和ICP-MS。使用NH 4 Cl作为挥发助剂与聚酰亚胺粉末混合在燃烧中,以便Cr回收。作为吸收溶液,采用含有HNO 3和HCl的混合物,为所有分析物提供定量回收率。通过尖峰恢复试验评估所提出的方法的准确性,结果与参考值(SEMI F48-0600方案)和通过分析聚乙烯(EC68OK - 低密度聚乙烯)的认证参考材料(CRM)进行评估。穗恢复为94至108%,而使用MIC和参考值的结果均为协议(优于94%)。关于CRM分析,在MIC和认证值之间没有观察到统计差异(T-Test,置信水平的95%)。所提出的方法允许具有高消化效率(溶解碳的600mg)的相对高样品质量(600mg)的燃烧,其防止在基于血浆的基础上测定期间的最终干扰,由碳在消化中引起的。可以使用稀释的酸作为吸收溶液,降低空白值,并且因此,即使对于ICP-OES分析,也可以在Ng G(-1)范围内的检测限。消化剂适用于ICP-OES和ICP-MS的分析物测定

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