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通过混合墨水在低温下制备的高导电性、柔性且抗氧化的铜镍电极。

Highly Conductive, Flexible, and Oxidation-Resistant Cu-Ni Electrodes Produced from Hybrid Inks at Low Temperatures.

作者信息

Tomotoshi Daisuke, Oogami Rika, Kawasaki Hideya

机构信息

Department of Chemistry and Materials Engineering, Faculty of Chemistry, Materials and Bioengineering, Kansai University, Suita-shi, Osaka 564-8680, Japan.

出版信息

ACS Appl Mater Interfaces. 2021 May 5;13(17):20906-20915. doi: 10.1021/acsami.1c04235. Epub 2021 Apr 23.

Abstract

Recently, Ni and Ni-Cu nanoparticle-based inks have gained considerable research interest because of their high corrosion resistance as conductors in electronic devices. However, reported inks based on Cu-Ni nanoparticles need to be sintered at high temperatures above 300 °C to obtain electrodes with high conductivity on the order of 10 Ω·cm. This study proposes a new conductive Cu-Ni-based hybrid ink that could be sintered at only 150-180 °C for producing Cu-Ni electrodes with low electrical resistance, high oxidation resistance, and flexibility. The hybrid ink contains Cu flakes and a complex of nickel formate and 1-amino-2-propanol (NiF-AmIP complex). At 150-180 °C, the Cu flakes catalyze the self-reduction of the NiF-AmIP complex, and Cu-Ni electrodes with high conductivity (on the order of 10 Ω·cm) are formed on flexible polymer substrates at temperatures exceeding 150 °C. Analysis indicates that metallic Ni was decorated on the Cu flakes (especially on the edge) to improve the electrode's conductivity, oxidation resistance, and flexibility by forming bridging interconnections between the Cu flakes. The Cu-Ni electrodes demonstrated high stability against oxidation up to approximately 400 °C in air, as well as at 80 °C and 80% RH after 7 days. In addition to the excellent oxidation stability, the Cu-Ni electrode showed high durability under mechanical bending stress. Such sintered Cu-Ni electrodes obtained from hybrid inks have great potentials in printed/flexible devices due to their oxidation resistance and cost-effectiveness.

摘要

最近,基于镍和镍铜纳米颗粒的墨水因其在电子设备中作为导体具有高耐腐蚀性而受到了广泛的研究关注。然而,报道的基于铜镍纳米颗粒的墨水需要在300℃以上的高温下烧结,以获得电导率在10Ω·cm量级的高导电电极。本研究提出了一种新型的基于铜镍的混合导电墨水,该墨水只需在150 - 180℃烧结,就能制备出具有低电阻、高抗氧化性和柔韧性的铜镍电极。这种混合墨水包含铜片以及甲酸镍和1 - 氨基 - 2 - 丙醇的络合物(NiF - AmIP络合物)。在150 - 180℃时,铜片催化NiF - AmIP络合物的自还原反应,在超过150℃的温度下,在柔性聚合物基板上形成高导电率(10Ω·cm量级)的铜镍电极。分析表明,金属镍附着在铜片上(尤其是边缘),通过在铜片之间形成桥接互连来提高电极的导电性、抗氧化性和柔韧性。铜镍电极在空气中高达约400℃以及在80℃和80%相对湿度下放置7天后,表现出高抗氧化稳定性。除了优异的氧化稳定性外,铜镍电极在机械弯曲应力下还表现出高耐久性。这种由混合墨水获得的烧结铜镍电极由于其抗氧化性和成本效益,在印刷/柔性设备中具有巨大潜力。

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