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首页> 外文期刊>Macromolecules >Cooperativity and Structural Relaxations in PVDF/PMMA Blends in the Presence of MWNTs: An Assessment through SAXS and Dielectric Spectroscopy
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Cooperativity and Structural Relaxations in PVDF/PMMA Blends in the Presence of MWNTs: An Assessment through SAXS and Dielectric Spectroscopy

机译:MWNT存在下PVDF / PMMA共混物中的协同性和结构弛豫:通过SAXS和介电谱的评估

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摘要

Intermolecular cooperativity and structural relaxations in PVDF/ PMMA blends were studied in this work with respect to different surface modified (amine, ~NH_2; carboxyl acid, ~COOH and pristine) multiwalled nanotubes (MWNTs) at 1 wt % near blend’s T_g and in the vicinity of demixing using dielectric spectroscopy, SAXS, DSC, and WAXD. Intermolecular cooperativity at T_g and configurational entropy was addressed in the framework of cooperative rearranging region (CRR) at T_g. Because of specific interactions between PVDF and NH_2-MWNTs, the local composition fluctuates at its average value resulting in a broad T_g. The scale of cooperativity (ξ_(CRR)) and the number of segments in the cooperative volume (N_(CRR)) is comparatively smaller in the blends with NH_2- MWNTs. This clearly suggests that the number of segments cooperatively relaxing is reduced in the blends due to specific interactions leading to more heterogeneity. The configurational entropy at T_g, as derived from Vogel-Fulcher and Adam? Gibbs analysis, was reduced in the blends in presence of MWNTs manifesting in entropic penalty of the chains. The crystallite size and the amorphous miscibility was evaluated using SAXS and was observed to be strongly contingent on the surface functional groups on MWNTs. Three distinct relaxationsα_c due to relaxations in the crystalline phase of PVDF, α_m indicating the amorphous miscibility in PVDF/PMMA blends, and αβ concerning the segmental dynamics of PMMAwere observed in the blends in the temperature range T_g < T < T_c. The dynamics as well as the nature of relaxations were observed to be dependent the surface functionality on the MWNTs. The dielectric permittivity was also enhanced in presence of MWNTs, especially with NH_2-MWNTs, with minimal losses. The influence of the MWNTs on the spherulite size and crystalline morphology of the blends was also confirmed by POM and SEM.
机译:在这项工作中,研究了PVDF / PMMA共混物中的分子间协同作用和结构弛豫,涉及到在掺混物的T_g附近1 wt%的不同表面改性(胺,〜NH_2;羧酸,〜COOH和原始)多壁纳米管(MWNTs)。使用介电谱,SAXS,DSC和WAXD进行混合的区域。在T_g的合作重排区(CRR)的框架内解决了T_g的分子间合作性和构型熵。由于PVDF与NH_2-MWNT之间的特定相互作用,局部组成会以其平均值波动,从而导致宽T_g。在与NH_2-MWNTs的混合物中,协同作用的规模(ξ_(CRR))和协同体积中的段数(N_(CRR))相对较小。这清楚地表明,由于特定的相互作用导致更多的异质性,共混物中合作松弛的链段数量减少了。由Vogel-Fulcher和Adam?得出的T_g处的结构熵。吉布斯分析在存在以链熵熵表现出的MWNT的情况下减少了共混物。使用SAXS评估了微晶尺寸和非晶态混溶性,并观察到它们在MWNT的表面官能团上具有很强的依赖性。在温度范围T_g

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