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Chemical structural characterization of pyrolyzed and subsequently ion-implanted poly(acrylonitrile)

机译:热解并随后离子注入的聚丙烯腈的化学结构表征

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Infrared (IR), Auger electron spectroscopy (AES) and X-ray photoelectron spectra (XPS) of pristine, pyrolyzed, and ion-implanted poly(acrylonitrite) (PAN) samples were obtained in order to correlate the structural changes accompanying pyrolysis and implantation with the electrical properties of the respective PAN products. The results show that PAN is first converted to a polyconjugated heterocyclic ladder structure at a temperature of 435 C and then to a graphite-like structure at temperature above 750 ℃. Pyrolysis studies took place in a temperature range of 350-750 ℃. IR studies showed that upon heat treatment at 435 ℃, major structural changes occur as indicated by the complete disappearance of the nitrile and methylene absorption bands and the formation of new bands. The degree of conjugation in pyrolyzed PAN can be selectively controlled by the proper choice of the heat treatment temperature. From the studies, ion implantation causes extensive nitrogen depletion and the nitrogen chemical state in the implanted sample is different from that found in the pyrolyzed materials. Upon ion implantation, the component assigned to the nitrogen in a sigma bonding state (401.27 eV) increased in intensity (46%) relative to the intensity (27%) of the component for which nitrogen is in a hetroaromatic structure. Both AES and XPS analysis showed the variation of C:N ratio as a function of heat treatment.
机译:为了获得与热解和注入相关的结构变化的相关性,获得了原始的,热解的和离子注入的聚(丙烯腈)(PAN)样品的红外(IR),俄歇电子能谱(AES)和X射线光电子能谱(XPS)。具有相应PAN产品的电性能。结果表明,PAN首先在435℃的温度下转变为多共轭杂环阶梯结构,然后在750℃以上的温度下转变为类石墨结构。热解研究在350-750℃的温度范围内进行。红外研究表明,在435℃进行热处理后,主要结构发生变化,这是腈和亚甲基吸收带完全消失并形成新的带所表明的。可以通过适当选择热处理温度来选择性地控制热解PAN中的共轭程度。根据研究,离子注入会导致大量的氮消耗,并且注入样品中的氮化学状态与热解材料中的氮化学状态不同。离子注入后,以sigma键合状态(401.27 eV)分配给氮的组分的强度(46%)相对于氮处于杂芳族结构的组分的强度(27%)增加。 AES和XPS分析均显示出C:N比随热处理的变化。

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