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Effect of sintering on mechanical and electrical properties of carbon nanotube based silver nanocomposites

机译:烧结对碳纳米管基纳米银复合材料力学和电学性能的影响

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摘要

Nanocrystalline (single and multiwall) carbon nanotube reinforced silver nanocomposites are successfully synthesized by a modified molecular level mixing method. These materials are subsequently sintered up to 800 °C in inert atmosphere for 12 h. To elucidate the effect of sintering, micro-structural, mechanical and electrical properties of fabricated nanocomposites are evaluated before and after sintering. Scanning and transmission electron microscopic characterization have revealed that the carbon nanotubes are embedded, anchored and homogenously dispersed in silver matrix. Measured hardness and Young’s modulus of fabricated nanocomposites are increased by 20–30 % after sintering. The carbon nanotube reinforcement has also improved electrical conductivity of low conducting nano-silver matrix before sintering. However, negative reinforcement effect is observed in high conducting bulk silver matrix after sintering. Comparatively improved mechanical and electrical properties of single wall carbon nanotube reinforced nanocomposites than multiwall nanotube reinforced nanocomposite are observed, which are correlated with high aspect ratio and larger effective contact surface area of single wall carbon nanotubes.
机译:纳米晶体(单壁和多壁)碳纳米管增强的银纳米复合材料通过改进的分子水平混合方法成功合成。随后在惰性气氛中将这些材料烧结至800°C达12小时。为了阐明烧结的效果,在烧结之前和之后评估了制备的纳米复合材料的微观结构,机械和电气性能。扫描和透射电镜表征表明,碳纳米管被嵌入,锚固并均匀分散在银基质中。烧结后,制成的纳米复合材料的测得硬度和杨氏模量提高了20-30%。碳纳米管增强材料还改善了烧结前低导电纳米银基体的电导率。然而,烧结后在高导电性块状银基体中观察到负的增强作用。观察到单壁碳纳米管增强的纳米复合材料比多壁纳米管增强的纳米复合材料具有相对改善的机械和电性能,这与单壁碳纳米管的高纵横比和更大的有效接触表面积有关。

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