Balasubramanian Kannan, Burghard Marko
Max-Planck-Institut für Festkörperforschung, Heisenbergstrasse 1, 70569 Stuttgart, Germany.
Small. 2005 Feb;1(2):180-92. doi: 10.1002/smll.200400118.
Since their discovery, carbon nanotubes have attracted the attention of many a scientist around the world. This extraordinary interest stems from their outstanding structural, mechanical, and electronic properties. In fact, apart from being the best and most easily available one-dimensional (1D) model system, carbon nanotubes show strong application potential in electronics, scanning probe microscopy, chemical and biological sensing, reinforced composite materials, and in many more areas. While some of the proposed applications remain still a far-off dream, others are close to technical realization. Recent advances in the development of reliable methods for the chemical functionalization of the nanotubes provide an additional impetus towards extending the scope of their application spectrum. In particular, covalent modification schemes allow persistent alteration of the electronic properties of the tubes, as well as to chemically tailor their surface properties, whereby new functions can be implemented that cannot otherwise be acquired by pristine nanotubes.
自从被发现以来,碳纳米管吸引了世界各地众多科学家的关注。这种非凡的兴趣源于它们出色的结构、机械和电子性能。事实上,碳纳米管除了是最佳且最容易获得的一维(1D)模型系统外,在电子学、扫描探针显微镜、化学和生物传感、增强复合材料以及许多其他领域都显示出强大的应用潜力。虽然一些提出的应用仍然遥不可及,但其他一些已接近技术实现。用于纳米管化学功能化的可靠方法开发方面的最新进展为扩大其应用范围提供了额外的推动力。特别是,共价修饰方案能够持久改变碳纳米管的电子性能,并对其表面性质进行化学定制,从而实现原始纳米管无法获得的新功能。