Liu Ye, Zhao Zhigang, Kang Lixing, Qiu Song, Li Qingwen
Key Laboratory of Multifunctional Nanomaterials and Smart Systems, Division of Advanced Materials, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou, 215123, China.
Small. 2024 Jan;20(3):e2304075. doi: 10.1002/smll.202304075. Epub 2023 Sep 7.
Single-walled carbon nanotubes (SWCNTs) that have a reproducible distribution of chiralities or single chirality are among the most competitive materials for realizing post-silicon electronics. Molecular doping, with its non-destructive and fine-tunable characteristics, is emerging as the primary doping approach for the structure-controlled SWCNTs, enabling their eventual use in various functional devices. This review provides an overview of important advances in the area of molecular doping of structure-controlled SWCNTs and their applications. The first part introduces the underlying physical process of molecular doping, followed by a comprehensive survey of the commonly used dopants for SWCNTs to date. Then, it highlights how the convergence of molecular doping and structure-sorting strategies leads to significantly improved functionality of SWCNT-based field-effect transistor arrays, transparent electrodes in optoelectronics, thermoelectrics, and many emerging devices. At last, several challenges and opportunities in this field are discussed, with the hope of shedding light on promoting the practical application of SWCNTs in future electronics.
具有可重现手性分布或单一手性的单壁碳纳米管(SWCNT)是实现后硅电子学最具竞争力的材料之一。分子掺杂具有无损和可微调的特性,正成为结构可控SWCNT的主要掺杂方法,使其最终能够应用于各种功能器件。本文综述了结构可控SWCNT分子掺杂领域的重要进展及其应用。第一部分介绍了分子掺杂的基本物理过程,随后全面概述了迄今为止常用于SWCNT的掺杂剂。然后,重点介绍了分子掺杂和结构分选策略的结合如何显著提高基于SWCNT的场效应晶体管阵列、光电子学中的透明电极、热电学以及许多新兴器件的功能。最后,讨论了该领域的一些挑战和机遇,希望为推动SWCNT在未来电子学中的实际应用提供启示。