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首页> 外文期刊>Polymer Degradation and Stability >Volumetric effects in the degradation of dimethacrylate-based polymer/filler nanocomposites: A positron annihilation study
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Volumetric effects in the degradation of dimethacrylate-based polymer/filler nanocomposites: A positron annihilation study

机译:二甲基丙烯酸酯类聚合物/填料纳米复合材料降解的体积效应:正电子湮没研究

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The applicability of positron annihilation lifetime (PAL) spectroscopy to identify volumetric changes in nanostructured polymer/filler substances is first verified at the example of commercially available dimethacrylate-based dental restorative composites Charisma® (Heraeus Kulzer GmbH, Germany) affected to light-curing photopolymerization and one-year dry physical ageing. Principal channel governing PAL spectra in these nanocomposites is recognized as mixed positron-Ps trapping, where posi-tronium Ps (i.e. bound positron-electron state) decay occurs in free-volume holes localized preferentially in polymer matrix, while free positron self-annihilation is character for interfacial voids at the surface of filler-particles assemblies in the filler and/or mixed filler-polymer environment Methodological algorithm for experimental PAL spectra refinement referred to as the x3-x2-CDA (coupling decomposition algorithm) is validated for these nanocomposites, obeying changes in atomic-deficient structure due to direct conversion between positron-trapping and Ps-decaying sites. Straightforward parameterization of the reconstructed PAL spectra allows meaningful identification of free-volume entities responsible for nanostructurization-driven transformations.
机译:正电子湮没寿命(PAL)光谱法鉴定纳米结构聚合物/填充物质的体积变化的适用性首先在商购的二甲基丙烯酸酯的牙科修复复合材料Charisma®(HeraeusKulzergmb,Germany)的实施例中进行了验证,影响了光固化光聚合和一年的干身体老化。在这些纳米复合材料中控制PAL光谱的主通道被识别为混合正电子-PS捕获,其中POSi-Tronium PS(即结合的正电子电源状态)衰减在优先在聚合物基质中优先定位的自由孔中,而自由正电子自湮灭是用于填料和/或混合填料 - 聚合物环境方法论方法的用于X3-X2-CDA(耦合分解算法)的实验PAL光谱细化的填充粒子组件的互补空隙的界面空隙的特征被验证这些纳米复合材料,由于正电子捕获和PS衰减地点的直接转换,遵守原子缺陷结构的变化。重建PAL光谱的直接参数化允许有意义地识别负责纳米结构尿样的变换的自由体积。

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