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可纺性沥青在孵化过程中的组成和熔融行为的演变。

Evolution of the Composition and Melting Behavior of Spinnable Pitch during Incubation.

机构信息

State Key Laboratory of Coal Conversion, Institute of Coal Chemistry, Chinese Academy of Sciences, 27 South Taoyuan Road, Taiyuan 030001, China.

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, No. 19 (A) Yuquan Road, Shijingshan District, Beijing 100049, China.

出版信息

Molecules. 2023 Jan 21;28(3):1097. doi: 10.3390/molecules28031097.

Abstract

The physical and chemical properties of spinnable pitch showed a huge impact on the performance of resultant pitch carbon fiber even if its physical and chemical properties were slightly changed. Various polycyclic aromatic compounds and abundant free radicals existed in spinnable pitch, and there are many interactions among molecules and free radicals. The molecular structure and composition of spinnable pitch were investigated during incubation, and the effect of molecular evaluation on rheological properties of spinnable pitch was illustrated using various characterization methods in this work. It indicated that n-hexane soluble fraction mainly occurred condensation or cleavage, and a small number of heavy components were generated after a long period. The fraction of n-hexane insoluble/toluene soluble underwent molecular condensation and cross-linking in the presence of oxygen-containing radicals and aromatic hydrocarbon radicals, while toluene insoluble/tetrahydrofuran soluble fraction tended to change in large molecules of polycyclic aromatic hydrocarbons. Lastly, tetrahydrofuran insoluble fraction was condensed due to its high aromaticity during the incubation process, and the content of aromatic carbon increased. These changes of composition and structure of spinnable pitch led to its softening point, increase in viscosity and flow activation energy, and deterioration of the rheological property.

摘要

可纺性沥青的物理化学性质对所得沥青碳纤维的性能有很大的影响,即使其物理化学性质略有变化。可纺性沥青中存在各种多环芳烃化合物和丰富的自由基,分子和自由基之间存在许多相互作用。在孵化过程中研究了可纺性沥青的分子结构和组成,并使用各种特性化方法说明了分子评估对可纺性沥青流变性的影响。结果表明,正己烷可溶部分主要发生缩合或裂解,长时间后会产生少量重质成分。正己烷不溶/甲苯可溶部分在含氧自由基和芳烃自由基存在下发生分子缩合和交联,而甲苯不溶/四氢呋喃可溶部分在多环芳烃的大分子中倾向于发生变化。最后,在孵化过程中,由于其高芳香度,四氢呋喃不溶部分发生缩合,芳香碳含量增加。可纺性沥青的组成和结构的这些变化导致其软化点、粘度和流动活化能增加,流变性恶化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fb9/9919995/db2ce1725423/molecules-28-01097-sch001.jpg

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