Québec Center for Functional Materials, Université du Québec à Montréal, Montréal, Department of Chemistry, rue Jeanne-Mance, Montréal, QC, Canada H2X2J6.
Nanoscale. 2017 Jul 20;9(28):9893-9901. doi: 10.1039/c7nr01919j.
Graphene inks are becoming widely popular. However the vast majority of these inks are formulated in polar solvents with high-boiling points. Their slow evaporation is a bottleneck factor in roll-to-roll printing processes. Here, we developed a highly-conductive fast-drying graphene ink in isooctane, a non-polar and low-boiling solvent. For this purpose, a diblock copolymer containing pendant cholesterol groups was used during the exfoliation of natural graphite in isooctane. The polymer develops non-covalent supramolecular interactions with the graphene conjugated system, resulting in the formation of stable graphene dispersions (up to c = 4 mg mL). These dispersions were used for direct writing on a variety of substrates, and were shown to dry instantly after application. The influence of polymer concentration on graphene characteristics, on colloidal stability and on electrochemical characteristics has been studied. The lowest sheet resistance (80 Ω □) was obtained when 23% of the graphene surface was covered by the polymer. In this case, the flakes were constituted of 2-5 graphene layers. More extensive exfoliation, down to single-layer graphene, was achieved at greater surface coverage, but led to inks with higher sheet resistance. Thus, by combining a tailored polymeric dispersant, a smooth exfoliation process and a low-boiling non-polar ink solvent, we were able to prepare highly-conductive fast-drying graphene inks which should have a high potentital for the development of roll-to-roll printed electronics.
石墨烯油墨正变得越来越流行。然而,这些油墨绝大多数是在沸点较高的极性溶剂中配制而成。它们的缓慢蒸发是卷对卷印刷工艺的一个瓶颈因素。在这里,我们开发了一种在非极性、低沸点溶剂异辛烷中高度导电、快速干燥的石墨烯油墨。为此,在天然石墨的异辛烷剥离过程中使用了一种含有胆固醇侧基的嵌段共聚物。该聚合物与石墨烯共轭体系形成非共价超分子相互作用,从而形成稳定的石墨烯分散体(高达 c = 4 mg mL)。这些分散体可直接用于各种基底的书写,涂抹后即可瞬间干燥。研究了聚合物浓度对石墨烯特性、胶体稳定性和电化学特性的影响。当聚合物覆盖石墨烯表面的 23%时,获得了最低的方阻(80 Ω □)。在这种情况下,薄片由 2-5 层石墨烯组成。在更大的表面覆盖率下,可以实现更广泛的剥离,达到单层石墨烯,但会导致油墨的方阻更高。因此,通过结合定制的聚合物分散剂、平滑的剥离过程和低沸点非极性油墨溶剂,我们能够制备出高度导电、快速干燥的石墨烯油墨,这对于开发卷对卷印刷电子产品具有很高的潜力。