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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >EFFECT OF THE CHEMICAL FORM OF THE ADDITIVES IN POLY(VINYL CHLORIDE) AND POLY(ETHYLENE) MATERIALS ON LASER ABLATION EFFICIENCY USING INDUCTIVELY COUPLED PLASMA ATOMIC EMISSION SPECTROMETRY
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EFFECT OF THE CHEMICAL FORM OF THE ADDITIVES IN POLY(VINYL CHLORIDE) AND POLY(ETHYLENE) MATERIALS ON LASER ABLATION EFFICIENCY USING INDUCTIVELY COUPLED PLASMA ATOMIC EMISSION SPECTROMETRY

机译:电感耦合等离子体原子发射光谱法研究聚氯乙烯和聚乙烯材料中添加剂的化学形态对激光烧蚀效率的影响

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The application of Laser Ablation Inductively Coupled Plasma Atomic Emission Spectrometry to the direct determination of additives in polymeric materials has been studied. A Nd:YAG laser, operating at both infrared (1064 nm) and UV (266 nm) wavelengths, has been used with a beam masking and a beam expander device for solid sampling of poly(vinyl chloride) (PVC) and poly(ethylene) (PE) materials. Emphasis was placed on the influence of the chemical structure of the elements to be determined and of the polymer matrix on laser ablation efficiency. Several samples of PVC and PE were produced by compounding Ca-, Sn- and Ti-based additives in the basic resins. In both polymers, the three elements were incorporated either as inorganic compounds, as organometallic compounds, or as a mixture of the two former structures. It has been shown that the signal-to-concentration ratios of the elements studied were strongly dependent on (i) the chemical structure of the elements in the additives used, (ii) the nature of the polymer matrix, and (iii) the interactions between additives, and between additives and the polymer. The carbon line was not sufficiently efficient to compensate for these effects, and the modification of the laser operating parameters did not affect significantly the ablation process. The results presented in this work pointed out the need to match matrix samples and standards to achieve reliable quantitative analysis of polymers. (C) 1997 Elsevier Science B.V. [References: 15]
机译:研究了激光烧蚀电感耦合等离子体原子发射光谱法在直接测定聚合物材料中添加剂的应用。 Nd:YAG激光器在红外(1064 nm)和紫外(266 nm)波长下均已使用,并带有光束掩模和光束扩展器,可对聚氯乙烯(PVC)和聚乙烯进行固体采样)(PE)材料。重点放在要确定的元素的化学结构和聚合物基体对激光烧蚀效率的影响上。通过将Ca,Sn和Ti基添加剂添加到基础树脂中,可以生产出一些PVC和PE样品。在这两种聚合物中,这三种元素要么作为无机化合物,作为有机金属化合物,要么作为两种先前结构的混合物被引入。已经表明,所研究元素的信号浓度比在很大程度上取决于(i)所用添加剂中元素的化学结构,(ii)聚合物基质的性质以及(iii)相互作用在添加剂之间,以及在添加剂和聚合物之间。碳线的效率不足以补偿这些影响,并且激光操作参数的更改不会显着影响烧蚀过程。这项工作提出的结果指出需要匹配基质样品和标准品以实现可靠的聚合物定量分析。 (C)1997 Elsevier Science B.V. [参考:15]

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