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Intermediate phases during solid to liquid transitions in long-chain n-alkanes

机译:长链正构烷烃固液过渡过程中的中间相

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摘要

The solid to liquid phase transition of n-alkanes with more than ten carbon atoms is an interesting phenomenon relevant to many fields, from cosmetics to automotive. Here we report Raman spectroscopy of tetradecane, pentadecane and hexadecane as a function of temperature. In order to gain information on the structural changes that the hydrocarbons undergo during melting, and to determine the temperature and the speed at which the phase change occurs, their temperature-dependent Raman spectra are acquired. The spectra are analysed not only with respect to frequency shifts, band widths, and intensity ratio of certain bands, but also using a principal component analysis. The spectroscopic data suggest that the solid to liquid phase transition in hexadecane, differently from tetradecane and pentadecane, is almost instantaneous. Tetradecane shows a slightly faster transition than pentadecane. In addition, a rotator phase as an intermediate state between the liquid and crystalline solid phases is identified in pentadecane. Different characteristic features in the solid spectra of the hydrocarbons relate tetradecane and hexadecane to a tryclinic crystalline structure, and pentadecane to an orthorhombic structure.
机译:具有十个以上碳原子的正构烷烃的固相到液相转变是一个有趣的现象,涉及从化妆品到汽车的许多领域。在这里,我们报告十四烷,十五烷和十六烷随温度变化的拉曼光谱。为了获得有关碳氢化合物在熔化过程中发生的结构变化的信息,并确定温度和发生相变的速度,获取了它们的温度相关拉曼光谱。不仅分析频谱的频移,带宽和某些频段的强度比,还使用主成分分析法。光谱数据表明,与十四烷和十五烷不同,十六烷中的固相至液相转变几乎是瞬时的。十四碳烷比十五碳烷的转变略快。另外,在十五烷中鉴定出作为液相和结晶固相之间的中间状态的旋转相。烃的固体光谱中的不同特征涉及十四烷和十六烷为三斜晶系晶体结构,而十五烷为正交晶结构。

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