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Combined LA-ICP-MS/LIBS: powerful analytical tools for the investigation of polymer alteration after treatment under corrosive conditions

机译:联合La-ICP-MS / LIBS:在腐蚀条件下治疗后的高分子改变调查的强大分析工具

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Polymers are used in a variety of different areas, including applications in food packaging, automotive and the semiconductor industry. Information about degradation of these materials during application, but also uptake of pollutants from the surrounding environment is therefore of great interest. Conventional techniques used for polymer characterization such as FT-IR or Raman spectroscopy, but also thermo-analytical techniques offer insights into degradation processes but lack the possibility to detect uptake of inorganic species. Moreover, these techniques do not allow the measurement of depth profiles, thus information about degradation or pollutant uptake with sample depth is not accessible. In this work, we propose LA-ICP-MS and LIBS as powerful analytical tools for polymer characterization, overcoming the limitations of conventional analytical techniques used for polymer analysis. Applicability of the developed procedures is demonstrated by the analysis of artificially weathered polyimides and modern art materials, indicating that the degradation of the polymer but also the uptake of corrosive gases is not limited to the sample surface. Finally, a tandem LA-ICP-MS/LIBS approach is employed, which combines the advantages of both laser-based procedures, enabling the simultaneous analysis of polymer degradation and cadmium uptake of polystyrene after exposure to UV radiation and treatment with artificial sea water.
机译:聚合物用于各种不同的区域,包括食品包装,汽车和半导体行业的应用。关于这些材料在申请期间降解这些材料的信息,而且来自周围环境的污染物的吸收是极大的兴趣。用于聚合物表征的常规技术,例如FT-IR或拉曼光谱,但热分析技术还提供降解过程的见解,但缺乏检测无机物种吸收的可能性。此外,这些技术不允许测量深度轮廓,因此无法访问有关样品深度的劣化或污染物吸收的信息。在这项工作中,我们将La-ICP-MS和Libs提出了一种强大的分析工具,用于聚合物表征,克服了用于聚合物分析的常规分析技术的局限性。通过分析人工风化的聚酰亚胺和现代艺术材料的分析证明了开发程序的适用性,表明聚合物的降解而且腐蚀性气体的吸收不限于样品表面。最后,采用串联LA-ICP-MS / LIBS方法,其结合了基于激光的程序的优点,使得在暴露于UV辐射和用人造海水处理之后的聚苯乙烯的同时分析聚合物降解和聚苯乙烯的摄取。

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