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Effects of particle size on X-ray transmission characteristics of PDMS/Ag nano- and microcomposites

机译:粒径对PDMS / Ag纳米和微复合材料X射线透射特性的影响

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Polymers reinforced with nano- or micro-material(s) are increasingly being considered for the development of lightweight, conformable shielding materials against diagnostic X-rays. However, the choice of the optimal particle-size and the concentration for the filler material is not yet well studied in terms of their role in effective attenuation of the desired range of X-ray energies. In this study, X-ray transmission properties of silver nano- and micro-particles were investigated at relatively very low concentrations of 0.5, 2.73 and 5.5 weight percentage (wt%) under a wide range of X-ray energies (20, 23, 26, 30, 40, 60 and 80 kV). With increase in concentration, silver nanoparticles showed enhanced X-ray attenuation properties with respect to silver microparticles over the whole range of X-ray energies, especially at the low energy X-rays (up to 9% more attenuation at 20 kV).
机译:越来越多地考虑使用纳米或微材料增强的聚合物来开发轻巧,舒适的屏蔽材料以诊断X射线。但是,关于填充材料的最佳粒度和浓度的选择,由于它们在有效衰减所需的X射线能量范围中所起的作用,目前尚未得到很好的研究。在这项研究中,研究了银纳米粒子和微米粒子在很低的0.5、2.73和5.5重量百分比(wt%)的浓度下,在宽范围的X射线能量下的X射线透射特性(20,23, 26、30、40、60和80 kV)。随着浓度的增加,相对于银微粒,银纳米粒子在整个X射线能量范围内表现出增强的X射线衰减特性,尤其是在低能X射线下(20 kV时衰减高达9%)。

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