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The optimization of methods of synthesis of nickel-silver core-shell nanoparticles for conductive materials

机译:用于导电材料的合成方法的优化镍 - 银芯壳纳米粒子

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Nickel-silver core-shell (Ni@Ag) nanoparticles (NPs) were formed in a two-step process: (1) the formation of a dispersion of Ni NPs; and (2) the transmetalation (galvanic displacement) reaction, where the surface of the Ni NPs acted as the reducing agent of Ag ions. Ni NPs were synthesized by the 'wet' chemical method, i.e., by the reduction of metal ions by using NaBH4 as the reducing agent. The influence of the concentration of polymeric stabilizer, reducing agent and Ag precursor on the properties of synthesized NPs was evaluated. In the optimal condition of synthesis, Ni@Ag NPs with about 50 and 210 nm-diameter Ni core coated with a thin (similar to 10-20 nm) Ag shell, were obtained. Finally, the stability of the synthesized spherical-shaped Ni@Ag NPs was tested and the results indicate long-term stability against aggregation and Ni oxidation. Thus, the resulting NPs are promising candidates for application in electronic devices, e.g., as components of conductive inks or pastes.
机译:在两步方法中形成镍银核 - 壳(NI @ Ag)纳米颗粒(NPS):(1)形成Ni NPS的分散体; (2)透射率(电流位移)反应,其中Ni NP的表面作用为Ag离子的还原剂。 通过“湿”化学方法,即通过使用NaBH 4作为还原剂来合成“湿”化学方法。 评价了聚合物稳定剂,还原剂和Ag前体对合成NPS性能的影响。 在合成的最佳条件下,获得具有薄(类似于10-20nm)Ag壳的约50和210nm直径Ni芯的Ni @ Ag NPS。 最后,测试了合成的球形Ni @ Ag NP的稳定性,结果表明了对聚集和Ni氧化的长期稳定性。 因此,所得到的NP是希望在电子设备中应用的候选者,例如,作为导电油墨或糊剂的组件。

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