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Polymer-grafted multiwall carbon nanotubes functionalized by nitrene chemistry: effect on cooperativity and phase miscibility

机译:硝化氮化化学官能化的聚合物接枝多壁碳纳米管:对合作和相溶性的影响

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摘要

The demixing of polystyrene (PS) and polyvinyl methylether) (PVME) was systematically investigated in the presence of surface functionalized multiwall carbon nanotubes (MWNTs) by melt rheology. As PS-PVME blends are weakly interacting blends, the contribution of conformational entropy increases, resulting in thermo-rheological complexity wherein the concentration fluctuation persists even beyond the critical demixing temperature. These phenomenal changes were followed here in the presence of MWNTs with different surface functional groups. Polystyrene was synthesised by atom transfer radical polymerization and was immobilized onto carboxyl acid functionalized multiwall carbon nanotubes (COOH-MWNTs) via nitrene chemistry in order to improve the phase miscibility in PS-PVME blends. Interestingly, blends with 0.25 wt% polystyrene grafted multiwall carbon nanotubes (PS-g-MWNTs) delayed the spinodal decomposition temperature in the blends by ~33 °C with respect to both control blends and those with COOH-MWNTs. While the localization of COOH-MWNTs in PVME was explained from a thermodynamic point of view, the localization of PS-g-MWNTs was understood to result from favorable PS-PVME contact and the degree of surface coverage of PS on the surface of MWNTs. The length of the cooperative rearranging region (ξ) decreased in presence of PS-g-MWNTs, suggesting confinement effects on large scale motions and enhanced interchain concentration fluctuation.
机译:通过熔体流变学,系统地研究了在表面官能化的多壁碳纳米管(MWNT)的存在下系统研究了聚苯乙烯(PS)和聚乙烯甲基醚)(PVME)的解剖。由于PS-PVME共混物弱相互作用,构象熵的贡献增加,导致热流变学复杂性,其中浓度波动甚至超出临界脱沉温度。在此处在具有不同表面官能团的MWNT的存在下遵循这些现象变化。通过原子转移自由基聚合合成聚苯乙烯,并通过硝化乙烯化学固定在羧酸官能化多壁碳纳米管(COOH-MWNT)上,以改善PS-PVME共混物的相混溶性。有趣的是,含有0.25wt%聚苯乙烯接枝多壁碳纳米管(PS-G-MWNT)的共混物相对于控制共混物和具有CoOH-MWNT的控制共混物的混合物中的纯穗分解温度延迟了混合物中。虽然从热力学的角度解释了PVME中COOH-MWNT的定位,但是PS-G-MWNT的定位被理解为由有利的PS-PVME接触和PS的表面覆盖程度在MWNT表面上产生。合作重排区(Ⅵ)的长度在PS-G-MWNTS存在下降低,表明对大规模运动的限制效应和增强的中间浓度波动。

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