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通过可控自由基聚合与“接枝到”方法相结合实现碳纳米管的功能化。

Functionalization of carbon nanotubes by combination of controlled radical polymerization and "grafting to" method.

作者信息

Abousalman-Rezvani Zahra, Eskandari Parvaneh, Roghani-Mamaqani Hossein, Salami-Kalajahi Mehdi

机构信息

Faculty of Polymer Engineering, Sahand University of Technology, P.O. Box: 51335-1996, Tabriz, Iran; Institute of Polymeric Materials, Sahand University of Technology, P.O. Box: 51335-1996, Tabriz, Iran.

Faculty of Polymer Engineering, Sahand University of Technology, P.O. Box: 51335-1996, Tabriz, Iran; Institute of Polymeric Materials, Sahand University of Technology, P.O. Box: 51335-1996, Tabriz, Iran.

出版信息

Adv Colloid Interface Sci. 2020 Apr;278:102126. doi: 10.1016/j.cis.2020.102126. Epub 2020 Feb 24.

Abstract

This paper reviews the recent advances in non-covalent and covalent tethering of small molecules and polymer chains onto carbon nanotube (CNT) and its derivatives. The functionalized CNT has recently attracted great attention because of an increasing number of its potential applications. In non-covalent functionalization of CNT, the sp-hybridized network plays a crucial role. The non-covalent grafting of small molecules and polymers can mainly be carried out through hydrogen bonding and π-stacking interactions. In covalent functionalization of CNT, condensation, cycloaddition, and addition reactions play a key role. Polymer modification has been reported by using three main methods of "grafting from", "grafting through", and also "grafting to". The "grafting from" and "grafting through" rely on propagation of polymer chains in the presence of CNT modified with initiator and double bond moieties, respectively. In "grafting to" method, which is the main aim of this review, the pre-fabricated polymer chains are mainly grafted onto the surface using coupling reactions. The coupling reactions are used for grafting pre-fabricated polymer chains and also small molecules onto CNT. Recent studies on grafting polymer chains onto CNT via "grafting to" method have focused on the pre-fabricated polymer chains by conventional and controlled radical polymerization (CRP) methods. CRP includes reversible activation, atom transfer, degenerative (exchange) chain transfer, and reversible chain transfer mechanisms, and could result in polymer-grafted CNT with narrow polydispersity index of the grafted polymer chains. Based on the mentioned mechanisms, nitroxide-mediated polymerization, atom transfer radical polymerization, and reversible addition-fragmentation chain transfer are known as the three commonly used CRP methods. Such polymer-modified CNT has lots of applications in batteries, biomedical fields, sensors, filtration, solar cells, etc.

摘要

本文综述了小分子和聚合物链非共价及共价连接到碳纳米管(CNT)及其衍生物上的最新进展。由于功能化的碳纳米管潜在应用越来越多,近来备受关注。在碳纳米管的非共价功能化中,sp杂化网络起着关键作用。小分子和聚合物的非共价接枝主要可通过氢键和π-堆积相互作用来实现。在碳纳米管的共价功能化中,缩合、环加成和加成反应起关键作用。聚合物改性已报道有“从接枝”“贯穿接枝”以及“向接枝”三种主要方法。“从接枝”和“贯穿接枝”分别依赖于聚合物链在经引发剂和双键部分改性的碳纳米管存在下的增长。“向接枝”方法是本综述的主要关注点,预制的聚合物链主要通过偶联反应接枝到表面。偶联反应用于将预制的聚合物链以及小分子接枝到碳纳米管上。近来关于通过“向接枝”方法将聚合物链接枝到碳纳米管上的研究主要集中在通过常规和可控自由基聚合(CRP)方法制备的预制聚合物链上。CRP包括可逆活化、原子转移、退化(交换)链转移和可逆链转移机制,可得到接枝聚合物链多分散指数窄的聚合物接枝碳纳米管。基于上述机制,氮氧自由基介导聚合、原子转移自由基聚合和可逆加成-断裂链转移是三种常用的CRP方法。这种聚合物改性的碳纳米管在电池、生物医学领域、传感器、过滤、太阳能电池等方面有许多应用。

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