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Replacement reaction-assisted synthesis of silver nanoparticles by jet for conductive ink

机译:用喷射进行导电油墨的替代反应辅助合成银纳米颗粒

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摘要

Synthesis of silver (Ag) nanoparticles with controllable morphology and with high purity remains challenging. In this work, single crystalline Ag nanoparticles with uniform morphology and high purity are successfully synthesized based on the replacement reaction between aqueous Ag nitrate (AgNO3) and solid copper (Cu) via jet. We further demonstrate that the developed jet method is facile and morphology-controllable. It is believed that diffusion limited aggregation and oriented attachment mechanisms are responsible for the formation of Ag nanostructures. The synthesized nanoparticles were characterized by different techniques. Finally, the Ag nanoparticles are successfully applied to prepare the conductive ink for flexible electronics and wearable equipment. Furthermore, the conductivity, flexibility and stability of the conductive material are measured. The conductive pattern exhibits lowest resistivity of 6.7 mu Omega cm, showing the good conductivity of the prepared conductive material. In addition, the prepared conductive material is flexible in nature and exhibits stability over a long period.
机译:具有可控形态和高纯度的银(Ag)纳米颗粒的合成仍然具有挑战性。在这项工作中,基于通过喷射的硝酸酯(AgNO3)和固体铜(Cu)之间的替代反应,成功地合成了具有均匀形态和高纯度的单晶Ag纳米颗粒。我们进一步证明开发的喷射方法是容易和形态可控的。据信,扩散有限的聚集和取向的附着机制负责形成Ag纳米结构。合成的纳米颗粒的特征在于不同的技术。最后,成功地应用Ag纳米粒子以制备柔性电子和可穿戴设备的导电油墨。此外,测量导电材料的导电性,柔韧性和稳定性。导电图案表现出6.7μmomegacm的最低电阻率,显示出制备的导电材料的良好导电性。此外,制备的导电材料本质上是柔性的,并且在长期内表现出稳定性。

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