首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Investigation of nanoscopic free volume and interfacial interaction in an epoxy resin/modified clay nanocomposite using positron annihilation spectroscopy
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Investigation of nanoscopic free volume and interfacial interaction in an epoxy resin/modified clay nanocomposite using positron annihilation spectroscopy

机译:使用正电子ni没光谱法研究环氧树脂/改性粘土纳米复合材料中的纳米自由体积和界面相互作用

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Epoxy/clay nanocomposites are synthesized using clay modified with the organic modifier N,N-dimethyl benzyl hydrogenated tallow quaternary ammonium salt (Cloisite 10A). The purpose is to investigate the influence of the clay concentration on the nanostructure, mainly on the free-volume properties and the interfacial interactions, of the epoxy/clay nanocomposite. Nanocomposites having 1, 3, 5 and 7.5 wt. % clay concentrations are prepared using the solvent-casting method. The dispersion of clay silicate layers and the morphologies of the fractured surfaces in the nanocomposites are studied using X-ray diffraction (XRD) and scanning electron microscopy (SEM), respectively. The observed XRD patterns reveal an exfoliated clay structure in the nanocomposite with the lowest clay concentration (≤1 wt. %). The ortho-positronium lifetime (τ_3), a measure of the free-volume size, as well as the fractional free volume (f_v) are seen to decrease in the nanocomposites as compared to pristine epoxy. The intensity of free positron annihilation (I_2), an index of the epoxy-clay interaction, decreases with the addition of clay (1 wt. %) but increases linearly at higher clay concentrations. Positron age-momentum correlation measurements are also carried out to elucidate the positron/positronium states in pristine epoxy and in the nanocomposites. The results suggest that in the case of the nanocomposite with the studied lowest clay concentration (1 wt. %), free positrons are primarily localized in the epoxy-clay interfaces, whereas at higher clay concentrations, annihilation takes place from the intercalated clay layers.
机译:使用有机改性剂N,N-二甲基苄基氢化牛脂季铵盐(Cloisite 10A)改性的粘土合成环氧/粘土纳米复合材料。目的是研究粘土浓度对环氧/粘土纳米复合材料纳米结构的影响,主要是对自由体积性质和界面相互作用的影响。具有1、3、5和7.5重量%的纳米复合材料。使用溶剂浇铸法制备%粘土浓度。分别使用X射线衍射(XRD)和扫描电子显微镜(SEM)研究了纳米复合材料中粘土硅酸盐层的分散性和断裂表面的形貌。观察到的XRD图谱显示出纳米复合材料中的剥落的粘土结构,具有最低的粘土浓度(≤1wt。%)。与原始环氧树脂相比,纳米复合材料的正正电子寿命(τ_3),自由体积尺寸的度量以及自由体积分数(f_v)下降。自由正电子an灭的强度(I_2),环氧-粘土相互作用的指数,随粘土(1 wt。%)的添加而降低,但在更高的粘土浓度下呈线性增加。还进行了正电子年龄动量相关性测量,以阐明原始环氧树脂和纳米复合材料中的正电子/正电子态。结果表明,在具有最低黏土浓度(1 wt。%)的纳米复合材料的情况下,游离正电子主要位于环氧-黏土界面中,而在黏土浓度较高时,插层黏土会发生an灭。

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