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THE SYNTHESIS AND CHARACTERIZATIONS OF NARROW-DISPERSED COPPER NANOPARTICLES

机译:窄晶铜纳米粒子的合成与表征

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A controlled synthesis method for preparing narrow-dispersed copper nanoparticles, using water and ethylene glycol as the reaction mediums respectively, has been reported. In order to obtain pure-phase copper nanoparticles using water, the reaction time of 8h is essential. Owing to the reduction property of ethylene glycol, the reaction rate using ethylene glycol is higher. In addition, the amount of reduction agent can reduce largely. Polyvinyl pyrrolidone plays great role on the size of copper particles, and the increasing of polyvinyl pyrrolidone concentration attributes to the smaller dimension particles. The mean diameter is about 4 run when the concentration of polyvinyl pyrrolidone is 0.5 mmol/L. Polyvinyl pyrrolidone acts as the polymeric capping agents in the reaction, preventing the agglomeration of the copper nanoparticles. When water is the reaction medium, Cu~(2+) complex is reduced to Cu~+ complex firstly, and the further reduction of Cu~+ forms the pure copper nanoparticle.
机译:已经报道了分别使用水和乙二醇作为反应介质的用于制备窄分散铜纳米粒子的受控合成方法。为了使用水获得纯相铜纳米颗粒,8h的反应时间至关重要。由于乙二醇的还原性,使用乙二醇的反应速率更高。另外,还原剂的量可以大大减少。聚乙烯吡咯烷酮对铜颗粒的尺寸起着重要作用,而聚乙烯吡咯烷酮浓度的增加归因于较小尺寸的颗粒。当聚乙烯吡咯烷酮的浓度为0.5mmol / L时,平均直径为约4nm。聚乙烯吡咯烷酮在反应中充当聚合物封端剂,防止了铜纳米粒子的团聚。当水为反应介质时,Cu〜(2+)络合物首先被还原为Cu〜+络合物,进一步还原后的Cu〜+形成纯铜纳米粒子。

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