» 碳纳米管

碳纳米管

1991
  • Sumio Iijima
研究人员在材料科学实验室用原子力显微镜操作碳纳米管。

(generate image for illustration only)

碳纳米管 (CNT) 是由单层碳原子(石墨烯)卷曲而成的圆柱形分子。它们可以是单壁 (SWCNT) 或多壁 (MWCNT)。它们拥有非凡的性质,包括优异的抗拉强度(约 100 GPa)、高电导率和高热导率。它们的电子行为(金属性或半导体性)取决于其手性,即石墨烯晶格卷曲的角度。

The structure of a carbon nanotube is key to its remarkable properties. A single-walled carbon nanotube (SWCNT) can be conceptualized by taking a sheet of graphene and rolling it into a seamless cylinder. The way the sheet is rolled is defined by a chiral vector, [latex]vec{C}_h = nvec{a}_1 + mvec{a}_2[/latex], where [latex]vec{a}_1[/latex] and [latex]vec{a}_2[/latex] are the graphene lattice vectors and (n, m) are integers. This chiral vector dictates the nanotube’s diameter and its electronic properties. If n = m, the nanotube is called “armchair” and is always metallic. If n – m is a multiple of 3, the nanotube is a narrow-gap semiconductor or quasi-metallic. Otherwise, it is a moderate-gap semiconductor. This extreme sensitivity of electronic properties to subtle structural changes is a unique feature of CNTs.

Multi-walled carbon nanotubes (MWCNTs) consist of multiple concentric cylinders of graphene, nested like Russian dolls. They are generally easier and cheaper to produce than SWCNTs but have more complex properties due to inter-wall interactions. Their mechanical strength is exceptional. The strong sp² carbon-carbon bonds make CNTs one of the stiffest and strongest materials ever discovered, with a Young’s modulus over 1 TPa and tensile strength up to 100 GPa, far exceeding that of steel. Their thermal conductivity along the tube axis can also surpass that of diamond. These properties make them ideal reinforcement agents in composite materials. However, challenges remain in achieving uniform dispersion within a matrix and in producing CNTs with a single, selected chirality on a large scale, which has limited their application in electronics where purity is paramount.

UNESCO Nomenclature: 2211
– Solid state physics

类型

材料

中断

革命

使用方法

小众/专业

前体

  • 1985年发现富勒烯(c60)
  • 碳纳米管存在和稳定性的理论预测
  • 电弧放电和激光烧蚀合成技术的发展
  • 高分辨率透射电子显微镜(hrtem)成像技术的进展

应用

  • 高强度复合材料中的添加剂(例如自行车车架、汽车零件)
  • 触摸屏和电子产品的导电膜
  • 原子力显微镜 (afm) 探针尖
  • 用于冷却电子设备的热界面材料
  • 超级电容器和电池中的组件

专利:

  • US 5,747,161
  • US 6,683,783

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Related to: carbon nanotube, cnt, swcnt, mwcnt, graphene, chirality, tensile strength, sumio iijima, composite material, nanotechnology.

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历史背景

1974-11-15
1980
1986
1991
2015-09-14
1970
1980
1980
1990
1994

(如果日期不详或不相关,例如 "流体力学",则对其显著出现的时间作了四舍五入的估计)。

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