在特雷赫德红外光谱频率上,玻璃状聚合物中局部和分割动力学的普遍特征

В. А. Рыжов
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引用次数: 0

摘要

在90 ~ 400K的温度范围内获得了玻璃状聚合物的低频红外光谱。在10 ~ 140 cm-1范围内的红外光谱温度变化显示出三个普遍特征:低温,对应单体单元的扭转振动运动;高温,由于初级弛豫(玻璃化转变)的影响;中间,由于β -转变温度下链中构象迁移的激活而引起。这种通用性既适用于具有普遍链对链相互作用的聚合物,也适用于具有氢键的聚合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Универсальные особенности проявления взаимосвязи локальной и сегментальной динамики в стеклообразных полимерах на терагерцовых частотах в инфракрасных спектрах
Low-frequency IR- spectra of glassy polymers were obtained and analyzed at temperatures from 90 to 400K. Temperature changes in the IR- spectra in the range from 10 to 140 cm-1 show three universal features: low-temperature, corresponding to the torsional-vibrational motion of monomer units, high-temperature, due to the influence of primary relaxation (glass transition) and intermediate, caused by the activation of conformational mobility in chains at a temperature of β - transition. This versatility extends both to polymers with universal chain-to-chain interactions and to those with hydrogen bonds.
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