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Tuning the phase separated morphology and resulting electrical conductivity of carbon nanotube filled PαMSAN/PMMA blends by compatibilization with a random or block copolymer

机译:通过与无规或嵌段共聚物相容来调节碳纳米管填充的PαMSAN/ PMMA共混物的相分离形态及所产生的电导率

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摘要

The mechanism governing the electrical properties for phase separating blends containing multiwall carbon nanotubes (MWNTs) is unravelled by tuning the compatibilization efficiency. Thereto, compatibilization by interfacially segregated block and random copolymers (cp) of poly(styrene-random/block-methyl methacrylate)(PS-r/b-PMMA) was achieved in phase separating blends of poly[(α-methyl styrene)-co-acrylonitrile]/poly(methylmethacrylate) (PαMSAN/PMMA) undergoing spinodal decomposition. A systematic study of the effects of copolymer architecture and molecular weight on the percolating network of selectively localized MWNTs is performed. Effective compatibilization is achieved with block cp irrespective of the ability of the blocks to entangle, whereas for random cp only long random cp having the ability to effectively entangle with the homopolymers are as efficient as long block cp. With increasing copolymer concentration, an increase and subsequent saturation of the electrical conductivity is attained. This originates from an increased connectivity and refinement of the MWNT laden PαMSAN phase, as confirmed by optical microscopy and the linear viscoelastic response of the blends. An effective compatibilizer led to an interfacial tension mediated suppression of an interfacial coarsening of the PαMSAN phase during phase separation, subsequently leading to percolation of MWNTs selectively localized in the PαMSAN phase. Furthermore, the copolymer having the ability to promote the development of a percolated network of MWNTs also allowed the network to be formed at a lower copolymer concentration as compared to that of blends with copolymers leading to restricted improvement in the connectivity of MWNTs. Our robust and simple procedure to tune the blend morphology via the efficiency of the compatibilizers can be used to achieve a synergistic increase in conducting properties.
机译:通过调节增容效率,可以阐明控制含多壁碳纳米管(MWNT)的相分离共混物的电性能的机理。到此为止,在聚[(α-甲基苯乙烯)-的相分离混合物中,通过界面分离的聚(苯乙烯-无规/甲基丙烯酸甲酯-PS-r / b-PMMA)的嵌段共聚物和无规共聚物(cp)实现了相容性。丙烯腈] /聚(甲基丙烯酸甲酯)(PαMSAN/ PMMA)发生旋节线分解。对共聚物结构和分子量对选择性局部化MWNTs渗滤网络的影响进行了系统的研究。无论嵌段的缠结能力如何,均能通过嵌段cp达到有效的相容性,而对于无规cp,只有能够有效与均聚物缠结的长无规cp与长嵌段cp一样有效。随着共聚物浓度的增加,实现了电导率的增加和随后的饱和。如光学显微镜和共混物的线性粘弹性响应所证实,这是由于增加了载有MWNT的MWNT的PαMSAN相的连通性和改善了。有效的增容剂导致相分离过程中界面张力介导的PαMSAN相界面粗化的抑制,随后导致选择性定位在PαMSAN相中的MWNT渗滤。此外,与与共聚物的共混物相比,具有促进MWNT的渗透网络发展的能力的共聚物还允许在较低的共聚物浓度下形成网络,从而导致MWNT的连接性的有限改善。我们通过相容剂的效率调整混合物形态的鲁棒而简单的程序可用于实现导电性能的协同增加。

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