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Recent developments in the selective dispersion of single-walled carbon nanotubes using conjugated polymers

机译:使用共轭聚合物选择性分散单壁碳纳米管的最新进展

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摘要

A significant barrier that impedes the commercialization of single-walled carbon nanotube-related applications is that all known synthetic methods produce a complicated mixture of semiconducting and metallic species. For device applications, pure semiconducting or pure metallic samples are desirable. Thus far, the purification methods that have been identified are capable of separating individual carbon nanotube species on a microgram scale, but purification on a large scale has remained elusive. The use of conjugated polymers to selectively disperse specific nanotube species is a promising approach to resolve the scalability issue, but a comprehensive understanding of the selectivity mechanism has not yet been achieved. Here, several of the trends reported in the literature are outlined to further the rational design of conjugated polymers for nanotube sorting. Numerous variables influence dispersion selectivity, including polymer structure and molecular weight, nanotube type used, sonication temperature, amount of polymer relative to nanotube, and solvent. We have organized these seemingly disparate parameters into two simple categories: conjugated polymer structure, and dispersion preparation conditions. Most importantly, we consider the mechanistic arguments that have been proposed, and provide additional insights based on the observations in the literature.
机译:阻碍单壁碳纳米管相关应用商业化的重要障碍是,所有已知的合成方法都会产生半导体和金属物种的复杂混合物。对于器件应用,需要纯半导体或纯金属样品。迄今为止,已经确定的纯化方法能够以微克级分离单个碳纳米管,但是大规模纯化仍然难以实现。使用共轭聚合物选择性地分散特定的纳米管种类是解决可扩展性问题的一种有前途的方法,但是尚未获得对选择性机理的全面理解。在此,概述了文献中报道的几种趋势,以进一步合理设计用于纳米管分选的共轭聚合物。许多变量会影响分散体的选择性,包​​括聚合物的结构和分子量,使用的纳米管类型,超声处理温度,相对于纳米管的聚合物量以及溶剂。我们将这些看似完全不同的参数分为两个简单类别:共轭聚合物结构和分散体制备条件。最重要的是,我们考虑已经提出的机械论点,并根据文献中的观察结果提供其他见解。

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