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Comparative study on the preparation of conductive copper pastes with copper nanoparticles prepared by electron beam irradiation and chemical reduction

机译:电子束辐射化学还原法制备铜纳米粒子制备导电铜浆的比较研究。

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摘要

Copper nanoparticles with narrow size distribution of 5-7 nm were synthesized by using electron beam irradiation. The copper nanoparticles were stable in ambient air for two months. TGA showed that the copper nanoparticles prepared by using electron beam irradiation have the higher wt% of pure copper metal compared with the one prepared by chemical reduction using hydrazine hydrate(N2H4·xH2O). The conductive copper paste with copper nanoparticles prepared by electron beam irradiation showed higher conductivity than the paste with copper nanoparticles prepared by chemical reduction with N2H4 due to small size, less amount of surfactants on the surface and higher stability against the oxidation in ambient condition. The highest conductivity of copper paste was determined as 170 S cm~(-1) at 90 wt% of copper nanoparticles in the paste.
机译:利用电子束辐照合成了5-7nm的窄尺寸分布的铜纳米粒子。铜纳米颗粒在环境空气中稳定两个月。 TGA表明,与通过水合肼(N 2 H 4·xH 2 O)化学还原制备的铜纳米颗粒相比,通过电子束辐射制备的铜纳米颗粒具有更高的wt%纯铜金属。通过电子束辐照制备的具有铜纳米颗粒的导电铜糊剂比通过用N 2 H 4化学还原制备的具有铜纳米颗粒的糊剂具有更高的电导率,这是因为其尺寸小,表面活性剂的量少并且在环境条件下对氧化的稳定性更高。在浆料中铜纳米颗粒的90 wt%时,铜浆料的最高电导率确定为170 S cm〜(-1)。

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