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Room temperature sintering of Cu-Ag core-shell nanoparticles conductive inks for printed electronics

机译:Cu-Ag核心壳纳米粒子的室温烧结印刷电子的导电油墨

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摘要

The monodisperse Cu-Ag core-shell nanoparticles (Cu@Ag NPs) for electric conductive inks were successfully prepared by a simple two-step process consisting of thermal decomposition and galvanic displacement. It was found that 20 mol.% coverage of Ag enabled Cu@Ag NPs oxidation resisting with air. A new approach to achieve coalescence and sintering of Cu@Ag NPs at room temperature was proposed. 1-amino-2-propanol (MIPA), hydrophilic amine with a short C-chain, was first applied to replace the strong stabilizer, the strong stabilizer oleylamine (OAM) adsorbed on particles, thereby obtained preliminary agglomeration and hydrophobic-to-hydrophilic transition to improve the wetting capability of electrolyte solution on the surface of metal film. Then, the reducing electrolyte NaBH4 solution was used as the destabilizing agent to deeply coalesce particles, and also inhibit the electrochemical corrosion. It takes only a few minutes to achieve sintering in air at room temperature. Due to the effective sintering at room temperature, the conductive patterns could be formed on thermo-sensitive substrates. The eventual resistivity was found to be as low as 36.3 mu Omega.cm.
机译:通过由热分解和电常压位移组成的简单两步方法成功地制备了用于电导墨水的单分散Cu-Ag核 - 壳纳米颗粒(Cu @ Ag NPS)。结果发现,20摩尔。%Ag的覆盖能够抵抗空气的Cu @ Ag NPS氧化。提出了一种在室温下实现Cu @ Ag NPS结束和烧结的新方法。第1-氨基-2-丙醇(MIPA),具有短C链的亲水性胺,首先施加替代强稳定剂,将强稳定剂油胺(OAM)吸附在颗粒上,从而获得初步附聚和疏水 - 亲水性改善电解液对金属膜表面的润湿能力的转变。然后,使用还原电解质NaBH 4溶液作为稳定的聚结颗粒的稳定剂,并且还抑制了电化学腐蚀。在室温下在空气中烧结只需要几分钟。由于室温下有效烧结,可以在热敏基板上形成导电图案。最终的电阻率被发现低至36.3μmga.cm。

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