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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Time-resolved EPR studies of main chain radicals from acrylic polymers. Effects of tacticity, solvent, and side group structure on chain stiffness
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Time-resolved EPR studies of main chain radicals from acrylic polymers. Effects of tacticity, solvent, and side group structure on chain stiffness

机译:丙烯酸聚合物主链自由基的时间分辨EPR研究。立构规整度,溶剂和侧基结构对链刚度的影响

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摘要

Main chain polymeric radicals from several acrylic polymers, produced by laser flash photolysis at 248 nm in liquid solution, have been studied using direct detection time-resolved electron paramagnetic resonance (TREPR) spectroscopy at 9.5 GHz. Highly isotactic poly(methyl methacrylate) (i-PMMA) shows a sharp, well-resolved spectrum at about 95 degrees C. Using synthetic methodology to disrupt the tacticity of i-PMMA, we observed different fast-motion hyperfine coupling constants for the main chain radicals. By raising the temperature of observation, we returned the coupling constants to the same value as those in the highly isotactic sample. This result is related qualitatively to the degree of stiffness of the polymer chains as a function of tacticity. The concept is tested further by comparison to two other acrylic polymers with bulky side chains: poly(fluorooctyl methacrylate) (PFOMA) and poly(adamantyl methacrylate) (PAMA), whose main chain radicals show significant line broadening even at 110 degrees C. Solvent effects on both spectral appearance (the alternating line-width effect) and kinetic decays (attributed to T, relaxation) are also presented and discussed in terms of main chain conformational motion.
机译:使用直接检测时间分辨电子顺磁共振(TREPR)光谱在9.5 GHz频率下研究了几种丙烯酸聚合物的主链聚合物基团,这些分子是通过在248 nm下在液体溶液中通过激光闪光光解法生产的。高度全同立构的聚甲基丙烯酸甲酯(i-PMMA)在约95摄氏度下显示出清晰的清晰光谱。使用合成方法破坏i-PMMA的立构规整性,我们观察到了主要的不同快速运动超精细偶联常数链自由基。通过提高观察温度,我们将耦合常数恢复为与高度全同立构样品相同的值。该结果在质量上与聚合物链的刚性程度随立构规整度有关。通过与另外两种具有大侧链的丙烯酸聚合物进行比较,对该概念进行了进一步测试:聚甲基丙烯酸氟辛酯(PFOMA)和聚甲基丙烯酸金刚烷基酯(PAMA),它们的主链基团即使在110摄氏度时也显示出明显的谱线展宽。还将以主链构象运动的形式介绍和讨论对频谱外观(交替的线宽效应)和动力学衰减(归因于T,弛豫)的影响。

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