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通过H场循环核磁共振弛豫测量法研究弹性体的玻璃态和聚合物动力学:填料的影响。

Glassy and Polymer Dynamics of Elastomers by H-Field-Cycling NMR Relaxometry: Effects of Fillers.

作者信息

Nardelli Francesca, Martini Francesca, Carignani Elisa, Rossi Elena, Borsacchi Silvia, Cettolin Mattia, Susanna Antonio, Arimondi Marco, Giannini Luca, Geppi Marco, Calucci Lucia

机构信息

Dipartimento di Chimica e Chimica Industriale, Università di Pisa, via G. Moruzzi 13, 56124 Pisa, Italy.

Istituto di Chimica dei Composti OrganoMetallici, Consiglio Nazionale delle Ricerche, via G. Moruzzi 1, 56124 Pisa, Italy.

出版信息

J Phys Chem B. 2021 May 6;125(17):4546-4554. doi: 10.1021/acs.jpcb.1c00885. Epub 2021 Apr 22.

Abstract

H spin-lattice relaxation rate () dispersions were acquired by field-cycling (FC) NMR relaxometry between 0.01 and 35 MHz over a wide temperature range on polyisoprene rubber (IR), either unfilled or filled with different amounts of carbon black, silica, or a combination of both, and sulfur cured. By exploiting the frequency-temperature superposition principle and constructing master curves for the total FC NMR susceptibility, χ″(ω) = ω(ω), the correlation times for glassy dynamics, τ, were determined. Moreover, the contribution of polymer dynamics, χ(ω), to χ″(ω) was singled out by subtracting the contribution of glassy dynamics, χ(ω), well represented by the Cole-Davidson spectral density. Glassy dynamics resulted moderately modified by the presence of fillers, τ values determined for the filled rubbers being slightly different from those of the unfilled one. Polymer dynamics was affected by the presence of fillers in the Rouse regime. A change in the frequency dependence of χ(ω) at low frequencies was observed for all filled rubbers, more pronounced for those reinforced with silica, which suggests that the presence of the filler particles can affect chain conformations, resulting in a different Rouse mode distribution, and/or interchain interactions modulated by translational motions.

摘要

通过场循环(FC)核磁共振弛豫测量法,在0.01至35 MHz的频率范围内,于较宽温度区间对未填充或填充了不同量炭黑、二氧化硅或二者组合且经硫磺硫化的聚异戊二烯橡胶(IR)进行了H自旋 - 晶格弛豫率()色散测量。通过利用频率 - 温度叠加原理并构建总FC NMR磁化率χ″(ω) = ω(ω)的主曲线,确定了玻璃态动力学的相关时间τ。此外,通过减去由科尔 - 戴维森谱密度很好表征的玻璃态动力学贡献χ(ω),分离出了聚合物动力学对χ″(ω)的贡献χ(ω)。玻璃态动力学因填料的存在而受到适度改变,填充橡胶的τ值与未填充橡胶的τ值略有不同。在Rouse区域,聚合物动力学受填料存在的影响。对于所有填充橡胶,在低频下观察到χ(ω)的频率依赖性发生变化,对于用二氧化硅增强的橡胶更为明显,这表明填料颗粒的存在会影响链构象,导致不同的Rouse模式分布,和/或由平移运动调制的链间相互作用。

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