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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dielectric Probe of Intermolecular Interactions in Poly(methyl methacrylate) (PMMA) and PMMA + SiO_2 Matrixes Doped with Luminescent Organics
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Dielectric Probe of Intermolecular Interactions in Poly(methyl methacrylate) (PMMA) and PMMA + SiO_2 Matrixes Doped with Luminescent Organics

机译:聚(甲基丙烯酸甲酯)(PMMA)(PMMA)和PMMA + SiO_2致掺杂发光有机物的介电分子相互作用探针

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Modifications in the molecular dynamics of the side-chain relaxation in poly(methyl methacrylate) (PMMA) have been recorded by monitoring the thermally stimulated depolarization currents (TSDC) #beta#-relaxation band of PMMA in three systems: bulk PMMA, PMMA polymerized in situ in porous SiO_2, and lasing matrixes with rhodamine 6G/Cl~- (R6G) and a perylene derivative (PG). To study the different types of inter- and intramolecular interactions, a range of dye concentrations and different polymerization initiators have been tested. In PMMA + SiO_2, the low-temperature (LT) shift of the #beta#-band and the increase of the energy barriers (W) associated with the side-chain (re)orientation are attributed to various counterbalancing effects. A scheme of extensive hydrogen-bond interaction (surface or chemical effect) between the ester carbonyls of PMMA and the silicic acid pore surface is used to explain the overall increase in the distributed energy barriers. In contrast, the reduction of the polymer's chain entanglements and the increase in the free volume (structural or physical effect), due to the pore-directed polymerization, are considered to loosen up several steric hindrances on the rotational motion. The modification of the relaxation times spectrum prompts the shift of the #beta#-relaxation in PMMA + SiO_2. In R6G + PMMA, the drastic LT shift of the #beta#-band indicates the partial coupling between the chromophores and the side-group rotations. The TSDC spectrum does not present a rotational relaxation of the polar rhodamine dye. In R6G + PMMA + SiO_2, the presence of the chromophores on the pore surfaces and the corresponding decrease of the "effective" average pore diameters available for MMA diffusion and PMMA growth balance the physical and chemical effects, as depicted in the similarity of the energy distributions. The speedup of the #beta#-relaxation with increasing dye content is ascribed to the reduced exposure of the side groups to chemical effect. The positive energy shift in PG + PMMA + SiO_2 can be explained by considering the mixing of PG and PMMA, which permits strong hydrogen-bonding interactions and simultaneously reduces PMMA's free volume. TSDC signals around room temperature (RT) are tentatively discussed in terms of a Maxwell-Wagnger-Sillars (MWS) polarization mode at the PMMA-SiO_2 interface.
机译:通过监测PMMA的热刺激的去极化电流(TSDC)在三种系统中的热刺激的去极化电流(TSDC)#β-β-克拉化带进行了修改。原位在多孔SiO_2中,并用罗丹明6g / cl〜 - (r6g)和丙烯衍生物(pg)的激光基质。为了研究不同类型的和分子间相互作用,已经测试了一系列染料浓度和不同的聚合引发剂。在PMMA + SIO_2中,与侧链(RE)方向相关的#β-BROB的低温(LT)偏移和与侧链(RE)方向相关的能量屏障(W)归因于各种平衡效果。 PMMA和硅酸孔表面的酯羰基之间的广泛氢键相互作用(表面或化学效应)的方案用于解释分布能屏障的总体增加。相反,由于孔引导的聚合,将聚合物的链缠结的减少和自由体积增加(结构或物理效应)的增加被认为是在旋转运动上放松几个空间障碍。弛豫时间谱的修改频谱提示PMMA + SiO_2中的#β#-Relaxation的偏移。在R6G + PMMA中,#β#频带的激烈LT偏移表示发色团和侧组旋转之间的部分耦合。 TSDC光谱不会呈现极性罗丹明染料的旋转弛豫。在R6G + PMMA + SiO_2中,在孔隙表面上存在发色团和“有效”平均孔径的相应降低可用于MMA扩散和PMMA生长平衡的物理和化学效果,如能量相似性所示分布。与染料含量增加的#β--克拉的加速归因于侧群的降低到化学效果。通过考虑PG和PMMA的混合,可以解释PG + PMMA + SiO_2中的正能量偏移,这允许强烈的氢键相互作用并同时降低PMMA的自由体积。在PMMA-SiO_2接口处的Maxwell-Wagnger-Sillars(MWS)偏振模式方面暂时讨论了室温(RT)周围的TSDC信号。

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