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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Far infrared (terahertz) spectroscopy of a series of polycyclic aromatic hydrocarbons and application to structure interpretation of asphaltenes and related compounds
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Far infrared (terahertz) spectroscopy of a series of polycyclic aromatic hydrocarbons and application to structure interpretation of asphaltenes and related compounds

机译:一系列多环芳烃的远红外光谱(太赫兹)及其在沥青质和相关化合物的结构解释中的应用

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A series of 33 different polycyclic aromatic hydrocarbons (PAHs) were studied by far infrared spectroscopy (terahertz spectroscopy) in the spectral range comprised between 600 and 50 cm~(-1). In addition to common PAHs like naphthalene, anthracene, phenanthrene, fluoranthene, picene, pyrene, benzo[α]pyrene, and perylene, also quite unusual PAHs were studied like tetracene, pentacene, acenaphtene, acenaphtylene, triphenylene, and decacyclene. A series of alkylated naphthalenes and anthracenes were studied as well as methypyrene. Partially or totally hydrogenated PAHs were also object of the present investigation, ranging from tetrahydronaphthalene (tetralin) to decahydronaphthalene (decalin), 9,10-dihydroanthracene, 9,10- dihydrophenanthrene, hexahydropyrene, and dodecahydrotriphenylene. Finally, the large and quite rare PAHs coronene, quaterrylene, hexabenzocoronene, and dicoronylene were studied by far infrared spectroscopy. The resulting reference spectra were used in the interpretation of the chemical structure of asphaltenes (as extracted from a heavy petroleum fraction and from bitumen), the chemical structures of other petroleum fractions known as DAE (distillate aromatic extract) and RAE (residual aromatic extract), and a possible interpretation of components of the chemical structure of anthracite coal. Asphaltenes, heavy petroleum fractions, and coal were proposed as model compounds for the interpretation of the emission spectra of certain proto-planetary nebulae (PPNe) with a good matching in the mid infrared between the band pattern of the PPNe emission spectra and the spectra of these oil fractions or coal. Although this study was finalized in an astrochemical context, it may find application also in the petroleum and coal chemistry.
机译:通过远红外光谱(太赫兹光谱)研究了一系列33种不同的多环芳烃(PAHs),光谱范围在600至50 cm〜(-1)之间。除了常见的PAH(例如萘,蒽,菲,荧蒽,pic 、,、苯并[α] py和per)外,还研究了非常不常见的PAH,例如并四苯,并五苯、,并a 、,并,、并三苯和十环。研究了一系列烷基化的萘和蒽以及甲基吡啶。部分或全部氢化的PAHs也是本研究的对象,范围从四氢萘(四氢萘)到十氢萘(十氢化萘),9,10-二氢蒽,9,10-二氢菲,六氢py和十二氢三苯撑。最后,通过远红外光谱研究了大型且罕见的多环芳烃,四氢萘,六苯并戊二烯和二苯并戊二烯。所得的参考光谱用于解释沥青质的化学结构(从重​​质石油馏分和沥青中提取),其他石油馏分的化学结构,称为DAE(馏出芳烃提取物)和RAE(残留芳烃提取物) ,以及对无烟煤化学结构成分的可能解释。提出以沥青质,重质石油馏分和煤为模型化合物,以解释某些原行星状星云(PPNe)的发射光谱,并且在中红外中PPNe发射光谱的谱带图和这些石油馏分或煤炭。尽管这项研究是在天化学背景下完成的,但它也可能在石油和煤炭化学中找到应用。

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