Laboratory of Macromolecular Chemistry and Nanoscience, Eindhoven University of Technology, The Netherlands.
Adv Mater. 2011 Feb 22;23(8):953-70. doi: 10.1002/adma.201003509. Epub 2010 Dec 22.
Carbon nanotubes (CNTs) have developed into a standard material used as a building block for nanotechnological developments. Based on the unique properties that make CNTs useful for many different applications in nanotechnology, optics, electronics, and material science, there has been a rapid development of this research area and many different applications have emerged in the past few years. Frequently, the alignment and immobilization of CNTs play an important role for many applications and different strategies, in particular post-synthesis approaches, can be applied. Recent developments of different techniques to immobilize and align carbon nanotubes are discussed and classified into three main categories: chemical immobilization and alignment, physical immobilization and alignment, and the use of external fields for these purposes. Many of the techniques involve multiple steps and may also cross these rather crudely defined boundaries. As such, the techniques are classified according to their most important or unique step.
碳纳米管(CNTs)已发展成为一种用作纳米技术发展的构建块的标准材料。基于使 CNTs 在纳米技术、光学、电子和材料科学的许多不同应用中有用的独特性质,该研究领域得到了迅速发展,并且在过去几年中出现了许多不同的应用。通常,CNTs 的对齐和固定对于许多应用非常重要,并且可以应用不同的策略,特别是后合成方法。本文讨论了不同用于固定和对齐 CNT 的技术的最新发展,并将其分为三类:化学固定和对齐、物理固定和对齐,以及为此目的使用外部场。许多技术涉及多个步骤,并且也可能跨越这些定义得相当粗糙的界限。因此,根据其最重要或最独特的步骤对技术进行分类。