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通过表面引发的 RAFT 聚合对碳纳米管进行仿生 PEG 化。

Biomimetic PEGylation of carbon nanotubes through surface-initiated RAFT polymerization.

机构信息

Department of Chemistry and Jiangxi Provincial Key Laboratory of New Energy Chemistry, Nanchang University, 999 Xuefu Avenue, Nanchang 330031, PR China; School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, PR China.

Department of Chemistry and Jiangxi Provincial Key Laboratory of New Energy Chemistry, Nanchang University, 999 Xuefu Avenue, Nanchang 330031, PR China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Nov 1;80:404-410. doi: 10.1016/j.msec.2017.06.009. Epub 2017 Jun 16.

Abstract

Carbon nanotubes (CNTs) are a type of one-dimensional carbon nanomaterials that possess excellent physicochemical properties and have been potentially utilized for a variety of applications. Surface modification of CNTs with polymers is a general route to expand and improve the performance of CNTs and has attracted great research interest over the past few decades. Although many methods have been developed previously, most of these methods still showed some disadvantages, such as low efficiency, complex experimental procedure and harsh reaction conditions etc. In this work, we reported a practical and novel way to fabricate CNTs based polymer composites via the combination of mussel inspired chemistry and reversible addition fragmentation chain transfer (RAFT) polymerization. First, the amino group was introduced onto the surface of CNTs via self-polymerization of dopamine. Then, chain transfer agent can be immobilized on the amino groups functionalized CNTs to obtain CNT-PDA-CTA, which can be utilized for surface-initiated RAFT polymerization. A water soluble and biocompatible monomer poly(ethylene glycol) monomethyl ether methacrylate (PEGMA) was adopted to fabricate pPEGMA functionalized CNTs through RAFT polymerization. The successful preparation of CNTs based polymer composites (CNT-pPEGMA) was confirmed by transmission electron microscopy, Fourier transform infrared spectroscopy, thermogravimetric analysis and X-ray photoelectron spectroscopy in details. The CNT-pPEGMA showed good dispersibility and desirable biocompatibility, making them highly potential for biomedical applications. More importantly, a large number of CNTs based polymer composites could also be fabricated through the same strategy when different monomers were used due to the good monomer adaptability of RAFT polymerization. Therefore, this strategy should be a general method for preparation of various multifunctional CNTs based polymer composites.

摘要

碳纳米管(CNTs)是一种一维碳纳米材料,具有优异的物理化学性质,已经在各种应用中得到了潜在的应用。通过聚合物对 CNTs 进行表面修饰是扩展和改善 CNTs 性能的一般途径,在过去几十年中引起了极大的研究兴趣。尽管以前已经开发了许多方法,但这些方法大多仍存在一些缺点,例如效率低、实验过程复杂以及反应条件苛刻等。在这项工作中,我们通过贻贝启发化学和可逆加成-断裂链转移(RAFT)聚合相结合,报道了一种实用且新颖的方法来制备基于 CNTs 的聚合物复合材料。首先,多巴胺自聚合在 CNTs 表面引入氨基。然后,链转移剂可以固定在氨基功能化的 CNTs 上,得到 CNT-PDA-CTA,它可用于表面引发 RAFT 聚合。采用水溶性和生物相容性单体聚乙二醇单甲醚甲基丙烯酸酯(PEGMA)通过 RAFT 聚合制备了 pPEGMA 功能化的 CNTs。详细的透射电子显微镜、傅里叶变换红外光谱、热重分析和 X 射线光电子能谱证实了 CNTs 基聚合物复合材料(CNT-pPEGMA)的成功制备。CNT-pPEGMA 具有良好的分散性和理想的生物相容性,使其在生物医学应用中具有很高的应用潜力。更重要的是,由于 RAFT 聚合具有良好的单体适应性,当使用不同的单体时,也可以通过相同的策略制备大量的基于 CNTs 的聚合物复合材料。因此,该策略应该是制备各种多功能基于 CNTs 的聚合物复合材料的通用方法。

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