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首页> 外文期刊>Journal of Applied Polymer Science >Mass DSC/TG and IR ascertained structure and color change of polyacrylonitrile fibers in airitrogen during thermal stabilization
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Mass DSC/TG and IR ascertained structure and color change of polyacrylonitrile fibers in airitrogen during thermal stabilization

机译:质量DSC / TG和IR确定了热稳定过程中空气/氮气中聚丙烯腈纤维的结构和颜色变化

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The structure evolution was studied by mass spectrum (MS), differential scanning calorimetry (DSC) and thermogravimetry (TG), Fourier transform infrared (FTIR) spectroscopy. The results indicated that the C=N and C=C groups appeared gradually with the increase of the temperature in air and nitrogen. The C=O groups appeared because of oxidative reaction in air. The C=N, C=C and C=O groups were all chromophores. The effect of conjugated C=N and C=C on the absorption of the visible light was shifted to longer wavelengths and indicated π-π~* transition. There was a strong bathochromic effect as the number of C=C bonds were increased. The effect of C=O and-NH_2 on the absorption of the visible light was shifted to longer wavelengths and indicated n-π~* transition. Oxygen could facilitate chemical reactions in air. Hence, the color of PAN in air was deeper than in nitrogen at the same temperature. The structural change of PAN in air was faster and more complex than in nitrogen. PAN fibers treated in air turned black after 230°C. However, PAN fibers turned black at 350°C in nitrogen. The MS and FTIR indicated that cyclization occurred before dehydrogenation during stabilization in air and nitrogen.
机译:通过质谱(MS),差示扫描量热法(DSC)和热重分析法(TG),傅立叶变换红外光谱(FTIR)光谱研究了结构演变。结果表明,随着空气和氮气温度的升高,C = N和C = C基团逐渐出现。由于空气中的氧化反应而出现C = O基团。 C = N,C = C和C = O基团均为发色团。共轭C = N和C = C对可见光吸收的影响被转移到更长的波长,并指示了π-π〜*跃迁。随着C = C键数量的增加,红移作用很强。 C = O和-NH_2对可见光吸收的影响被转移到更长的波长,并显示出n-π〜*跃迁。氧气可以促进空气中的化学反应。因此,在相同温度下,空气中PAN的颜色比氮气中的颜色深。空气中PAN的结构变化比氮气中的结构更快,更复杂。在空气中处理的PAN纤维在230°C后变为黑色。但是,PAN纤维在氮气中在350°C时变黑。 MS和FTIR表明环化发生在空气和氮气稳定期间的脱氢之前。

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