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Graphene-stabilized copper nanoparticles as an air-stable substitute for silver and gold in low-cost ink-jet printable electronics

机译:石墨烯稳定的铜纳米颗粒可在低成本喷墨可印刷电子产品中稳定稳定地替代银和金

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摘要

Metallic copper nanoparticles were synthesized by a bottom-up approach, and in situ coated with protective shells of graphene in order to get a metal nanopowder of high air stability and chemical inertness. Using an amphiphilic surfactant, a water-based copper nanocolloid could be prepared and successfully printed onto a polymer substrate by conventional ink-jet printing using household printers. The dried printed patterns exhibited strong metallic gloss and an electrical conductivity of > 1 S cm(-1) without the need for a sintering or densification step. This conductivity currently limits use in electronics to low current application or shielding and decorative effects. The high stability of graphene-coated copper nanoparticles makes them economically a most attractive alternative to silver or gold nanocolloids, and will strongly facilitate the industrial use of metal nanocolloids in consumer goods.
机译:通过自下而上的方法合成了金属铜纳米粒子,并在原位包覆了石墨烯的保护壳,从而获得了具有高空气稳定性和化学惰性的金属纳米粉。使用两亲性表面活性剂,可以制备水基铜纳米胶体并通过使用家用打印机的常规喷墨印刷成功地将其印刷到聚合物基材上。干燥的印刷图案表现出很强的金属光泽和> 1 S cm(-1)的电导率,而无需进行烧结或致密化步骤。目前,这种导电性限制了其在电子产品中的使用范围,使其只能用于低电流应用或屏蔽和装饰效果。石墨烯涂层的铜纳米颗粒的高稳定性使其在经济上成为银或金纳米胶体的最有吸引力的替代品,并将极大地促进金属纳米胶体在消费品中的工业应用。

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