Sakurai Shintaro, Akiyama Yusuke, Kawasaki Hideya
Faculty of Chemistry, Materials and Bioengineering, Kansai University, 3-3-35 Yamate-cho, Suita 564-8680, Japan.
R Soc Open Sci. 2018 Jul 4;5(7):172417. doi: 10.1098/rsos.172417. eCollection 2018 Jul.
Cellulose paper is an attractive substrate for paper electronics because of its advantages of flexibility, biodegradability, easy incorporation into composites, low cost and eco-friendliness. However, the micrometre-sized pores of cellulose paper make robust/conductive films difficult to deposit onto its surface from metal-nanoparticle-based inks. We developed a Cu-based composite ink to deposit conductive Cu films onto cellulose paper via low-temperature sintering in air. The Cu-based inks consisted of a metallo-organic decomposition ink and formic-acid-treated Cu flakes. The composite ink was heated in air at 100°C for only 15 s to give a conductive Cu film (7 × 10 Ω cm) on the cellulose paper. Filtration of the Cu-based composite ink accumulated Cu flakes on the paper, which enabled formation of a sintered Cu film with few defects. A strategy was developed to enhance the bending stability of the sintered Cu films on paper substrates using polyvinylpyrrolidone-modified Cu flakes and amine-modified paper. The resistance of the Cu films increased only 1.3-fold and 1.1-fold after 1000 bending cycles at bending radii of 5 mm and 15 mm, respectively. The results of this study provide an approach to increasing the bending stability of Cu films on cellulose paper.
纤维素纸因其具有柔韧性、可生物降解性、易于与复合材料结合、成本低和环保等优点,是纸质电子产品的理想基材。然而,纤维素纸的微米级孔隙使得基于金属纳米颗粒的墨水难以在其表面沉积坚固/导电的薄膜。我们开发了一种铜基复合墨水,通过在空气中低温烧结,在纤维素纸上沉积导电铜膜。铜基墨水由金属有机分解墨水和甲酸处理的铜片组成。复合墨水在空气中100°C加热仅15秒,就在纤维素纸上得到了导电铜膜(7×10Ω·cm)。过滤铜基复合墨水会使铜片堆积在纸上,从而形成缺陷较少的烧结铜膜。我们开发了一种策略,使用聚乙烯吡咯烷酮改性的铜片和胺改性的纸来提高烧结铜膜在纸质基材上的弯曲稳定性。在弯曲半径为5毫米和15毫米的情况下,经过1000次弯曲循环后,铜膜的电阻分别仅增加了1.3倍和1.1倍。本研究结果提供了一种提高纤维素纸上铜膜弯曲稳定性的方法。