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Residual dipolar coupling for the assessment of cross-link density changes in gamma-irradiated silica-PDMS composite materials

机译:残留偶极耦合,用于评估γ-辐照二氧化硅-PDMS复合材料中的交联密度变化

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We have measured changes in transverse relaxation times (T-2e), residual dipolar couplings (), and the mean-squared fluctuations in the residual dipolar couplings (), associated with cross-link density changes in a complex silica-filled polydiphenylpolysiloxane/polydimethylsiloxane (PDPS/PDMS) block copolymer composite material. The crosslinks were induced by both chemical modification of the base polymer and by radiolytic aging. We have detected H-1 NMR responses from polymer chains directly interacting with the silica filler (similar to2x10(6) rad(2) sec(-2) and similar to2x10(6) rad(2) sec(-2)) and non-network, low molecular weight chains and chain ends (similar to1x10(5) rad(2) sec(-2)). The network domain and the non-network domain were observed to exchange spin magnetization with a correlation time of 1 sec. No evidence of spin-exchange effects on the stimulated echo were observed between the PDMS and PDPS blocks, although the blocks were observed to be in spatial proximity by double quantum NMR methods. The residual dipolar couplings change in a straightforward manner with radiation and chemically induced cross-linking of the polymer network. The strength of the filler-polymer interaction was seen to affect only the residual dipolar couplings and the transverse relaxation times and not directly the mean-squared fluctuations of the residual dipolar couplings. Dipolar correlation effect NMR shows direct evidence for surface adsorbed species, however, and has measured changes in the amount of surface adsorption due to irradiation. The results suggest that siloxane polymer cross-linking was preceded by an initial disruption of the hydrogen bond interaction between the polymer backbone and the silica silanol groups at the polymer/silica interface and that noticeable radiation induced cross-linking then occurs at dosages above 100 kGray. The work reported here shows that detailed characterization of the relaxation processes of the various nuclei in the siloxane polymers under static conditions has the potential to provide detailed insight into changes in the mechanisms and energetics of motional processes brought about by polymer aging processes. (C) 2002 American Institute of Physics. [References: 36]
机译:我们测量了横向弛豫时间(T-2e),残余偶极耦合()和残余偶极耦合的均方波动()的变化),这与复杂的二氧化硅填充的聚二苯基聚硅氧烷/聚二甲基硅氧烷(PDPS / PDMS)嵌段共聚物复合材料中的交联密度变化有关。交联是通过基础聚合物的化学修饰和辐射老化来诱导的。我们已经检测到直接与二氧化硅填料相互作用的聚合物链的H-1 NMR反应(近似于2x10(6)rad(2)sec(-2)和近似于2x10(6)rad(2)sec(-2 ))和非网络的低分子量链和链端(类似于1x10(5)rad(2)sec(-2))。观察到网络域和非网络域以1秒的相关时间交换自旋磁化强度。尽管通过双量子NMR方法观察到PDMS和PDPS嵌段在空间上接近,但没有观察到自旋交换对受激回波的影响。残余偶极偶合随着聚合物网络的辐射和化学诱导的交联而以直接的方式改变。看到填料-聚合物相互作用的强度仅影响残余偶极耦合和横向弛豫时间,而不直接影响残余偶极耦合的均方波动。偶极相关效应NMR显示了表面吸附物质的直接证据,但是已经测量了由于辐射引起的表面吸附量的变化。结果表明,在硅氧烷聚合物交联之前,聚合物主链与聚合物/二氧化硅界面处的硅硅烷醇基团之间的氢键相互作用最初受到破坏,然后在高于100 kGray的剂量下发生明显的辐射诱导的交联。 。此处报道的工作表明,在静态条件下对硅氧烷聚合物中各种原子核的弛豫过程进行详细表征,有可能提供对聚合物老化过程带来的运动过程的机理和能量学变化的详细了解。 (C)2002美国物理研究所。 [参考:36]

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