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长链碳氢化合物的拉曼光谱:非谐计算、实验及对生物膜成像的影响。

Raman spectra of long chain hydrocarbons: anharmonic calculations, experiment and implications for imaging of biomembranes.

机构信息

Institute of Chemistry and The Fritz Haber Research Center, The Hebrew University, Jerusalem 91904, Israel.

出版信息

Phys Chem Chem Phys. 2011 Jul 28;13(28):12724-33. doi: 10.1039/c1cp20618d. Epub 2011 Jun 14.

Abstract

First-principles anharmonic vibrational calculations are carried out for the Raman spectrum of the C-H stretching bands in dodecane, and for the C-D bands in the deuterated molecule. The calculations use the Vibrational Self-Consistent Field (VSCF) algorithm. The results are compared with liquid-state experiments, after smoothing the isolated-molecule sharp-line computed spectra. Very good agreement between the computed and experimental results is found for the two systems. The combined theoretical and experimental results provide insights into the spectrum, elucidating the roles of symmetric and asymmetric CH(3) and CH(2) hydrogenic stretches. This is expected to be very useful for the interpretation of spectra of long-chain hydrocarbons. The results show that anharmonic effects on the spectrum are large. On the other hand, vibrational degeneracy effects seem to be rather modest at the resolution of the experiments. The degeneracy effects may have more pronounced manifestations in higher-resolution experiments. The results show that first-principles anharmonic vibrational calculations for hydrocarbons are feasible, in good agreement with experiment, opening the way for applications to many similar systems. The results may be useful for the analysis of CARS imaging of lipids, for which dodecane is a representative molecule. It is suggested that first-principles vibrational calculations may be useful also for CARS imaging of other systems.

摘要

本文对十二烷的 C-H 伸缩带的喇曼光谱以及氘代分子的 C-D 带进行了第一性原理非谐振动计算。计算采用了振动自洽场(VSCF)算法。对孤立分子计算得到的谱线锐线进行平滑处理后,将计算结果与液态实验进行了比较。对这两个体系,计算结果与实验结果非常吻合。理论与实验的综合结果为光谱提供了深入的认识,阐明了对称和非对称 CH(3)和 CH(2)氢伸展的作用。这对于长链碳氢化合物光谱的解释非常有用。结果表明,非谐效应对光谱的影响很大。另一方面,振动简并效应对实验分辨率的影响似乎相当小。在更高分辨率的实验中,简并效应可能会有更明显的表现。结果表明,对于与实验吻合良好的碳氢化合物的第一性原理非谐振动计算是可行的,为应用于许多类似体系开辟了道路。对于 CARS 成像脂质的分析,这些结果可能非常有用,因为十二烷是一种代表性分子。本文还建议,第一性原理振动计算对于其他体系的 CARS 成像也可能有用。

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