Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of the Ministry of Education, College of Chemistry and Materials Science , Northwest University , 710069 Xi'an , People's Republic of China.
ACS Appl Mater Interfaces. 2019 Feb 13;11(6):6448-6455. doi: 10.1021/acsami.8b21162. Epub 2019 Feb 4.
This paper reports a procedure leading to shear exfoliation of pristine few-layer graphene flakes in water and subsequent site-selective formation of Cu/graphene films on polymer substrates, both of which are enabled by employing the water soluble 1-pyrenebutyric acid tetrabutylammonium salt (PyB-TBA). The exfoliation with PyB-TBA as an enhancer leads to as-deposited graphene films dried at 90 °C that are characterized by electrical conductivity of ∼110 S/m. Owing to the good affinity of the tetrabutylammonium cations to the catalyst PdCl, electroless copper deposition selectively in the graphene films is initiated, resulting in a self-aligned formation of highly conductive Cu/graphene films at room temperature. The excellent solution-phase and low-temperature processability, self-aligned copper growth, and high electrical conductivity of the Cu/graphene films have permitted fabrication of several electronic circuits on plastic foils, thereby indicating their great potential in compliant, flexible, and printed electronics.
本文报道了一种在水中使原始少层石墨烯薄片发生剪切剥落的方法,以及随后在聚合物衬底上进行的、具有选择性的 Cu/石墨烯薄膜的原位形成,这两种方法都得益于水溶性的 1-对苯丁酸四丁基铵盐(PyB-TBA)的使用。使用 PyB-TBA 作为增强剂进行的剥落导致在 90°C 干燥的沉积石墨烯薄膜具有约 110 S/m 的电导率。由于四丁基铵阳离子对催化剂 PdCl 的良好亲和力,在石墨烯薄膜中选择性地引发了无电铜沉积,从而在室温下自对准形成了高导电性的 Cu/石墨烯薄膜。Cu/石墨烯薄膜具有优异的溶液加工性能和低温加工性能、自对准的铜生长以及高导电性,这使其能够在塑料箔上制造出几个电子电路,从而表明它们在顺应性、灵活性和印刷电子学方面具有巨大的潜力。