Controlled synthesis, properties, and applications of ultralong carbon nanotubes

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Kangkang Wang, Fei Wang, Qinyuan Jiang, Ping Zhu, Khaixien Leu and Rufan Zhang
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Abstract

Carbon nanotubes (CNTs) are typical one-dimensional nanomaterials which have been widely studied for more than three decades since 1991 because of their excellent mechanical, electrical, thermal, and optical properties. Among various types of CNTs, the ultralong CNTs which have lengths over centimeters and defect-free structures exhibit superior advantages for fabricating superstrong CNT fibers, CNT-based chips, transparent conductive films, and high-performance cables. The length, orientation, alignment, defects, cleanliness, and other microscopic characteristics of CNTs have significant impacts on their fundamental physical properties. Therefore, the controlled synthesis and mass production of high-quality ultralong CNTs is the key to fully exploiting their extraordinary properties. Despite significant progress made in the study of ultralong CNTs during the past three decades, the precise structural control and mass production of ultralong CNTs remain a great challenge. In this review, we systematically summarize the growth mechanism and controlled synthesis strategies of ultralong CNTs. We also introduce the progress in the applications of ultralong CNTs. Additionally, we summarize the scientific and technological challenges facing the mass production of ultralong CNTs and provide an outlook and in-depth discussion on the future development direction.

Abstract Image

Abstract Image

超长碳纳米管的可控合成、特性和应用
碳纳米管(CNTs)是一种典型的一维纳米材料,因其优异的机械、电气、热和光学特性,自 1991 年以来已被广泛研究了三十多年。在各种类型的碳纳米管中,长度超过厘米且结构无缺陷的超长碳纳米管在制造超强碳纳米管纤维、碳纳米管芯片、透明导电薄膜和高性能电缆方面表现出卓越的优势。碳纳米管的长度、取向、排列、缺陷、洁净度和其他微观特性对其基本物理性质有重大影响。因此,高质量超长碳纳米管的可控合成和批量生产是充分利用其非凡特性的关键。尽管过去三十年来超长 CNT 的研究取得了重大进展,但超长 CNT 的精确结构控制和大规模生产仍然是一个巨大的挑战。在这篇综述中,我们系统地总结了超长 CNTs 的生长机理和可控合成策略。我们还介绍了超长 CNTs 的应用进展。此外,我们还总结了大规模生产超长 CNTs 所面临的科学和技术挑战,并对未来的发展方向进行了展望和深入探讨。
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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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