Zhang Tao, Matsuda Hirofumi, Zhou Haoshen
Energy Technology Research Institute, National Institute of Industrial Science and Technology (AIST), Umezono 1-1-1, Tsukuba, Ibaraki 305-8568 (Japan).
ChemSusChem. 2014 Oct;7(10):2845-52. doi: 10.1002/cssc.201402567. Epub 2014 Aug 27.
A key challenge in processing carbon nanotubes and their composites for large-scale applications is aggregation. Cation-π stacking interactions have been discovered to disperse heavily entangled single-walled carbon nanotube (SWNT) bundles in ionic liquids (ILs). In this work, we found that a dispersible, silky single-layer graphene (SLG) can be readily gathered together to form a crosslinked gel after entrapping sufficient IL molecular via the likely noncovalent interaction. By incorporating the dispersed SWNTs into the gathered SLG gel synchronously, we prepared solid, finely crosslinked SWNTs-SLG films, assisted by an avenue of 2-step extraction to remove the IL completely. The gel-derived SWNTs-SLG complex film was applied as a support material of oxygen cathodes for Li-O2 batteries. It exhibited a remarkable improved cycleability in comparison to made of SWNTs and SLG alone due to the finely crosslinked feature. Decorated SWNTs and SLG can also form gel-derived complexes via the same process to construct support-catalyst complexes. A SWNTs-SLG film loaded with Ru nanoparticles exhibited not only catalytic effects, but also the ability to suppress the side reactions, and hence stabilized the whole Li-O2 battery. Our research introduces a gel-derived, high-dispersed processing of carbon nanotube-graphene complexes and demonstrates their favorable applications on Li-O2 batteries.
在将碳纳米管及其复合材料用于大规模应用的过程中,一个关键挑战是团聚。人们发现阳离子-π堆积相互作用可使严重缠结的单壁碳纳米管(SWNT)束在离子液体(IL)中分散。在这项工作中,我们发现,一种可分散的丝状单层石墨烯(SLG)在通过可能的非共价相互作用捕获足够的IL分子后,可以很容易地聚集在一起形成交联凝胶。通过将分散的单壁碳纳米管同步掺入聚集的单层石墨烯凝胶中,我们制备了固体、精细交联的单壁碳纳米管-单层石墨烯薄膜,并通过两步萃取法完全去除离子液体。凝胶衍生的单壁碳纳米管-单层石墨烯复合薄膜被用作锂氧电池氧阴极的支撑材料。由于其精细交联的特性,与单独由单壁碳纳米管和单层石墨烯制成的材料相比,它表现出显著提高的循环性能。修饰的单壁碳纳米管和单层石墨烯也可以通过相同的过程形成凝胶衍生的复合物,以构建支撑-催化剂复合物。负载钌纳米颗粒的单壁碳纳米管-单层石墨烯薄膜不仅具有催化作用,还具有抑制副反应的能力,从而稳定了整个锂氧电池。我们的研究引入了一种凝胶衍生的、高分散的碳纳米管-石墨烯复合物加工方法,并展示了它们在锂氧电池中的良好应用。