Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, China.
Small. 2013 Apr 22;9(8):1188-205. doi: 10.1002/smll.201203154. Epub 2013 Mar 21.
Carbon nanotubes (CNTs) and graphene have attracted great attention for numerous applications for future flexible electronics, owing to their supreme properties including exceptionally high electronic conductivity and mechanical strength. Here, the progress of CNT- and graphene-based flexible thin-film transistors from material preparation, device fabrication techniques to transistor performance control is reviewed. State-of-the-art fabrication techniques of thin-film transistors are divided into three categories: solid-phase, liquid-phase, and gas-phase techniques, and possible scale-up approaches to achieve realistic production of flexible nanocarbon-based transistors are discussed. In particular, the recent progress in flexible all-carbon nanomaterial transistor research is highlighted, and this all-carbon strategy opens up a perspective to realize extremely flexible, stretchable, and transparent electronics with a relatively low-cost and fast fabrication technique, compared to traditional rigid silicon, metal and metal oxide electronics.
碳纳米管(CNTs)和石墨烯因其超高的导电性和机械强度等卓越性能,在未来的柔性电子产品领域受到广泛关注。本文综述了基于 CNT 和石墨烯的柔性薄膜晶体管在材料制备、器件制造技术和晶体管性能控制方面的研究进展。目前先进的薄膜晶体管制造技术主要分为三类:固相法、液相法和气相法,并讨论了实现基于纳米碳的柔性晶体管实际生产的可能扩展途径。特别地,本文重点介绍了柔性全碳纳米材料晶体管研究的最新进展,与传统的刚性硅、金属和金属氧化物电子相比,这种全碳策略为实现极其灵活、可拉伸和透明的电子产品提供了一个具有低成本和快速制造技术的视角。