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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Measurements of free radical in vitamin E-doped ultra-high molecular weight polyethylene: Dependence on materials processing and irradiation environments
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Measurements of free radical in vitamin E-doped ultra-high molecular weight polyethylene: Dependence on materials processing and irradiation environments

机译:掺杂维生素E的超高分子量聚乙烯中自由基的测量:取决于材料加工和辐照环境

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摘要

Ultra-high molecular weight polyethylene (UHMWPE), doped with vitamin E (a-tocopherol (α-T)), was irradiated with gamma rays in nitrogen (N_2) or air, and the resulting free radicals were detected in air using an electron spin resonance (ESR) technique. Two groups of samples were investigated. In one group, samples were prepared from blends of α-T (20 wt%) and UHMWPE powder (PPE-α-T) and, in the other, from compression molded blocks (CMPE-α-T). The CMPE-a-T blocks contained 0% (control), 0.5%, 1.0%, 10.0%, 15.0%, 20.0% and 25.0% α-T by weight.When irradiation was performed in air, the ESR spectrum of powder samples showed the presence of only vitamin E radical (toco-pheroxyl, α-T-O'), and there was no detectable signal due to PE radicals (alkyl/allyl). Most likely, all PE radicals were quenched by vitamin E during irradiation in air. However, when irradiation was performed in N_2, composite ESR spectra showed the presence of both PE and α-T-O radicals. Compared to the control (PPE, 0% α-T) PE radicals in PPE-20% α-T were found to be significantly reduced or quenched by α-T. The presence of α-T in powder samples, however, did not affect the long-term (71 days in this study) oxidation behavior of the PE radicals.Compression molded samples, with and without α-T, produced identical ESR spectra irrespective of their irradiation environment N_2 or air. However, radical concentration, measured immediately after irradiation, was found to be an order of magnitude less in CMPE-α-T than in the control (CMPE-0% α-T). They also evidenced identical structural changes in the respective ESR spectra during subsequent oxidation for 24 days in open air. These observations suggest that α-T can effectively quench a significant fraction of PE radicals during irradiation, but has no measurable effect on subsequent reactions. No significant difference was found in the ESR spectra of samples containing different α-T concentration. Published by Elsevier B.V.
机译:在氮气(N_2)或空气中用伽马射线辐照掺杂有维生素E(α-生育酚(α-T))的超高分子量聚乙烯(UHMWPE),并使用电子在空气中检测所得的自由基自旋共振(ESR)技术。研究了两组样品。一组样品是由α-T(20 wt%)和UHMWPE粉末(PPE-α-T)的混合物制备的,另一组是由压模块(CMPE-α-T)制备的。 CMPE-aT嵌段的α-T含量为0%(对照),0.5%,1.0%,10.0%,15.0%,20.0%和25.0%。当在空气中照射时,粉末样品的ESR谱显示仅存在维生素E自由基(生育酚-羟基,α-T-O'),并且由于PE自由基(烷基/烯丙基)而无法检测到信号。在空气中照射期间,所有PE自由基最有可能被维生素E淬灭。然而,当在N_2中进行辐照时,复合ESR光谱显示PE和α-T-O自由基均存在。与对照(PPE,0%α-T)相比,发现PPE-20%α-T中的PE自由基被α-T显着还原或淬灭。然而,粉末样品中α-T的存在并不会影响PE自由基的长期(在本研究中为期71天)的氧化行为。无论是否存在α-T,压缩成型的样品均会产生相同的ESR光谱它们的照射环境N_2或空气。但是,发现在辐照后立即测量的自由基浓度在CMPE-α-T中比对照(CMPE-0%α-T)小一个数量级。他们还证明了在随后的露天空气中氧化24天期间,各个ESR光谱的结构相同变化。这些观察结果表明,α-T可以在辐射过程中有效地淬灭大部分PE自由基,但对随后的反应没有可测量的作用。在包含不同α-T浓度的样品的ESR光谱中未发现显着差异。由Elsevier B.V.发布

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