Kuznetsov Sergey M, Iablochnikova Maria S, Sagitova Elena A, Prokhorov Kirill A, Nikolaeva Gulnara Yu, Ustynyuk Leila Yu, Ivchenko Pavel V, Vinogradov Alexey A, Vinogradov Alexander A, Nifant'ev Ilya E
Prokhorov General Physics Institute of the Russian Academy of Sciences, Vavilov Str. 38, 119991 Moscow, Russia.
Moscow Institute of Physics and Technology, Institutskiy Per. 9, 141700 Dolgoprudnyi, Moscow Region, Russia.
Polymers (Basel). 2020 Sep 21;12(9):2153. doi: 10.3390/polym12092153.
The expansion of the range of physico-chemical methods in the study of industrially significant α-olefin oligomers and polymers is of particular interest. In our article, we present a comparative Raman study of structurally uniform hydrogenated dimers, trimers, tetramers, and pentamers of 1-hexene and 1-octene, that are attractive as bases for freeze-resistant engine oils and lubricants. We found out that the joint monitoring of the disorder longitudinal acoustic mode (D-LAM) and symmetric C-C stretching modes allows the quantitative characterization of the number and length of alkyl chains (i.e., two structural characteristics), upon which the pour point and viscosity of the hydrocarbons depend, and to distinguish these compounds from both each other and linear alkanes. We demonstrated that the ratio of the contents of CH and CH groups in these hydrocarbons can be determined by using the intensities of the bands in the spectra, related to the asymmetric stretching vibrations of these groups. The density functional theory (DFT) calculations were applied to reveal the relations between the wavenumber and bandshape of the symmetric C-C stretching mode and a conformation arrangement of the 1-hexene and 1-octene dimers. We found that the branched double-chain conformation results in the splitting of the C-C mode into two components with the wavenumbers, which can be used as a measure of the length of branches. This conformation is preferable to the extended-chain conformation for hydrogenated 1-hexene and 1-octene dimers.
在对具有工业重要性的α-烯烃低聚物和聚合物的研究中,拓展物理化学方法的应用范围尤其引人关注。在我们的文章中,我们对1-己烯和1-辛烯结构均一的氢化二聚体、三聚体、四聚体和五聚体进行了拉曼光谱对比研究,这些物质作为抗冻发动机油和润滑剂的基础成分具有吸引力。我们发现,联合监测无序纵向声学模式(D-LAM)和对称C-C伸缩模式,可以对烷基链的数量和长度(即两个结构特征)进行定量表征,而烃类的倾点和粘度取决于这些特征,并且能够将这些化合物彼此区分开来,还能将它们与线性烷烃区分开来。我们证明,通过使用光谱中与这些基团不对称伸缩振动相关的谱带强度,可以确定这些烃类中CH和CH基团含量的比例。应用密度泛函理论(DFT)计算来揭示对称C-C伸缩模式的波数和谱带形状与1-己烯和1-辛烯二聚体构象排列之间的关系。我们发现,支化双链构象会导致C-C模式分裂为两个具有特定波数的组分,这可以用作衡量支链长度的指标。对于氢化的1-己烯和1-辛烯二聚体,这种构象比伸展链构象更可取。