State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou 510640, China.
Nanoscale. 2019 Jan 3;11(2):725-732. doi: 10.1039/c8nr07123c.
There is great interest in extending cellulosic platforms to applications in flexible, lightweight, low-cost and sustainable electronics. The critical need is the development of methods to confer electronic properties to these materials platforms (i.e., paper and fabrics). Here we report a highly conductive, pliable and foldable Cu/cellulose paper electrode enabled by a simple low-cost and scalable wet-processing method to coat a Cu nanoparticle (NP) layer on common cellulose paper, where polydopamine adhesion and electroless deposition were used to yield highly conductive paper with a sheet resistance as low as 0.01 Ω sq-1. This Cu/cellulose paper has excellent stability because of the strong adhesion between Cu NPs and cellulose, and because the methods are sufficiently mild to prevent damage to the paper substrate. This fabrication method results in the controlled deposition of Cu NPs and yields Cu/cellulose paper with highly hydrophobic and self-cleaning properties, high photothermal conversion efficiency, and excellent electromagnetic interface (EMI) shielding effectiveness. This high-performance Cu/cellulose paper could have promising application potential for a range of emerging applications in flexible electronics and packaging.
人们对将纤维素平台扩展到灵活、轻巧、低成本和可持续电子产品的应用领域非常感兴趣。关键需求是开发赋予这些材料平台(即纸张和织物)电子性能的方法。在这里,我们报告了一种高度导电、柔韧和可折叠的 Cu/纤维素纸电极,该电极采用简单、低成本和可扩展的湿法处理方法实现,即在普通纤维素纸上涂覆一层 Cu 纳米颗粒 (NP) 层,其中使用聚多巴胺粘附和化学镀来获得导电性极高的纸张,其面电阻低至 0.01 Ω sq-1。由于 Cu NPs 和纤维素之间的强附着力,以及这些方法足够温和,不会损坏纸张基底,因此这种 Cu/纤维素纸具有出色的稳定性。这种制造方法可实现 Cu NPs 的受控沉积,并可得到具有高疏水性和自清洁性能、高光热转换效率和优异电磁接口 (EMI) 屏蔽效果的 Cu/纤维素纸。这种高性能的 Cu/纤维素纸在新兴的柔性电子产品和包装应用领域具有广阔的应用前景。