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Pyrene oligomers: Their isolation, molecular characterization, and phase behavior.

机译:低聚物:它们的分离,分子表征和相态。

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摘要

Carbonaceous pitches can serve as attractive precursors for advanced carbon materials such as high thermal conductivity fibers or carbon-carbon composites. Yet the effects of composition and molecular structure on the bulk properties (e.g., mesophase content and melting point) of these precursors remain only partly known, mainly because of the difficulties associated with the isolation, identification, and quantification of the large (i.e., molecular weight (mol wt) > 350-400 Da) polycyclic aromatic hydrocarbon (PAH) oligomers comprising these pitches. In this study, oligomeric fractions were isolated via supercritical extraction (SCE) from two representative pitches: a petroleum pitch (M-50) produced by the thermal polymerization of aromatic decant oil (a byproduct of the fluid catalytic cracking process) and a pyrene pitch produced catalytically with AlCl3. Molecular-structure characterization and mesophase analysis were performed on selected oligomeric fractions and oligomers. High-purity (>97%) dimer and trimer fractions were isolated from M-50 pitch via SCE using pure toluene as the extractive solvent. 99%-pure dimer and trimer oligomers were isolated from catalytically polymerized pyrene pitch; however, their recovery was only possible with the addition of N-methylpyrrolidone (NMP) as a cosolvent with toluene. This solvent mixture significantly increased product yields (3x vs. neat toluene) and inhibited undesirable side reactions that occurred between pure toluene and pyrene oligomers. The key dimeric isomers present in pyrene pitches produced both catalytically and thermally were isolated from the dimer fraction via reverse-phase HPLC, using dichloromethane (DCM) as the mobile phase. Molecular-structure information for individual species was obtained via MALDI-MS and by UV-vis and fluorescence spectroscopy. With this approach, the 5 possible pyrene dimer isomers (2 alternant and 3 non-alternant) in the catalytically produced pitch were all isolated and identified. Furthermore, four of those isomers (2 alternant and 2 non-alternant) were also identified in the pitch produced thermally. Methylated species were detected only in the pitch made catalytically, indicating that the methylation reactions occur exclusively because of catalytic activity. Both pyrene trimer and an M-50 trimer fraction were analyzed for mesophase via cross-polarized optical microscopy. A fully developed (100%) liquid crystalline phase was observed for the pyrene trimer (mol wt = 598 Da) produced catalytically. To the author's knowledge, this is the lowest molecular weight PAH for which mesophase formation has ever been observed. Furthermore, the softening point of the pyrene trimer mesophase was a relatively low 290 ºC. On the other hand, conversion to mesophase (~40%) was observed for the M-50 trimer fraction, which had a mol wt range of 650-900 Da.
机译:碳质沥青可以用作高级碳材料(如高导热率纤维或碳-碳复合材料)的有吸引力的前体。然而,组成和分子结构对这些前体的整体性质(例如,中间相含量和熔点)的影响仍然只是部分已知,主要是因为与大分子(即分子)的分离,鉴定和定量相关的困难重量(mol wt)> 350-400 Da)组成这些沥青的多环芳烃(PAH)低聚物。在这项研究中,通过超临界萃取(SCE)从两个代表性的沥青中分离出低聚物馏分:由芳族倾析油(流化催化裂化过程的副产物)热聚合产生的石油沥青(M-50)和a沥青用AlCl3催化生产。对选定的低聚级分和低聚物进行了分子结构表征和中间相分析。使用纯甲苯作为萃取溶剂,通过SCE从M-50沥青中分离出高纯度(> 97%)的二聚体和三聚体级分。从催化聚合的pitch沥青中分离出99%纯的二聚体和三聚体低聚物。但是,只有加入N-甲基吡咯烷酮(NMP)作为与甲苯的助溶剂,才能回收它们。这种溶剂混合物显着提高了产品收率(相对于纯甲苯,是3倍),并抑制了纯甲苯和pyr低聚物之间发生的不良副反应。使用二氯甲烷(DCM)作为流动相,通过反相HPLC从二聚体馏分中分离出催化和热生成的pyr沥青中存在的关键二聚异构体。单个物种的分子结构信息是通过MALDI-MS以及紫外可见光谱和荧光光谱获得的。用这种方法,分离并鉴定了催化产生的沥青中的5个可能的pyr二聚体异构体(2个交替和3个非交替)。此外,在热产生的沥青中还鉴定出其中的四个异构体(2个交替和2个非交替)。仅在催化制备的沥青中检测到甲基化物质,这表明甲基化反应完全是由于催化活性而发生的。通过交叉偏振光学显微镜分析了trim三聚体和M-50三聚体级分的中间相。对于催化生成的produced三聚体(摩尔重量= 598 Da),观察到完全发展的(100%)液晶相。据作者所知,这是观察到中间相形成的最低分子量PAH。此外,the三聚体中间相的软化点相对较低,为290℃。另一方面,对于M-50三聚级分,观察到其转变为中间相(〜40%),其摩尔重量范围为650-900 Da。

著录项

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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