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Solutions of acrylonitrile copolymers in N-methylmorpholine-N-oxide: Structure, properties, fiber spinning

机译:丙烯腈共聚物在N-甲基卟啉-N-氧化物中的溶液:结构,性能,纤维纺丝

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摘要

Highly concentrated solutions of acrylonitrile copolymers (PAN) in N-methylmorpholine N-oxide (NMMO) were obtained via the solid-phase activation method. Specific interactions in the system at different stages of the dissolution process starting from solid-state activation and finishing with a transition to a viscous state were studied by IR spectroscopy, polarizing microscopy, interferometry and rheology. It was shown that the crucial factor determining a possibility of dissolution is the complex formation between carboxyl groups in the copolymer and the electron donor N -> O group in the solvent. This complex arises during the process of solid-phase activation of PAN and crystalline NMMO, which thereafter melts and transforms into a homogeneous solution having viscoelastic behavior. In the temperature range of 130-135 degrees C, irreversible chemical transformations take place in the solutions due to the coherent interaction between nitrile groups; these reactions lead to the formation of cyclic structures and conjugated sequences in the PAN chains. Rheological properties follow this process via specific viscosity and viscoelasticity evolution in time.
机译:通过固相活化法得到N-甲基丙酮N-氧化物(NMMO)中的高浓度丙烯腈共聚物(锅)的溶液。通过IR光谱研究从固态激活和过渡到粘性状态的溶解过程的不同阶段的特定相互作用是通过IR光谱,偏振显微镜,干涉测量和流变学。结果表明,确定溶解的可能性是溶剂中共聚物中羧基与溶剂中的电子供体N - > O基团之间的复杂形成。该复合物在平底锅和结晶NMMO的固相活化过程中产生,随后熔化并转化成具有粘弹性行为的均匀溶液。在130-135摄氏度的温度范围内,由于丁腈基团相干的相互作用,在溶液中发生不可逆的化学转化;这些反应导致平底脉链中的环状结构和缀合的序列。流变性能通过特异性粘度和粘弹性进化遵循该方法。

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  • 来源
    《European Polymer Journal》 |2017年第2017期|共12页
  • 作者单位

    Russian Acad Sci AV Topchiev Inst Petrochem Synth 29 Leninsky Prospect Moscow 119991 Russia;

    Russian Acad Sci AV Topchiev Inst Petrochem Synth 29 Leninsky Prospect Moscow 119991 Russia;

    Russian Acad Sci AV Topchiev Inst Petrochem Synth 29 Leninsky Prospect Moscow 119991 Russia;

    Russian Acad Sci AV Topchiev Inst Petrochem Synth 29 Leninsky Prospect Moscow 119991 Russia;

    Russian Acad Sci AV Topchiev Inst Petrochem Synth 29 Leninsky Prospect Moscow 119991 Russia;

    Russian Acad Sci AV Topchiev Inst Petrochem Synth 29 Leninsky Prospect Moscow 119991 Russia;

    Russian Acad Sci AV Topchiev Inst Petrochem Synth 29 Leninsky Prospect Moscow 119991 Russia;

    Lomonosov Moscow State Univ Chem Dept Moscow 119991 Russia;

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  • 正文语种 eng
  • 中图分类 有机化学;
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