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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Characterization of Long Linear and Branched Alkanes and Alcohols for Temperatures up to 573.15 K by Surface Light Scattering and Molecular Dynamics Simulations
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Characterization of Long Linear and Branched Alkanes and Alcohols for Temperatures up to 573.15 K by Surface Light Scattering and Molecular Dynamics Simulations

机译:表面光散射和分子动力学模拟的温度高达573.15 k的长线性和支链烷烃和醇的表征

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摘要

This work contributes to the characterization of long linear and branched alkanes and alcohols via the determination of their thermophysical properties up to temperatures of 573.15 K. For this, experimental techniques including surface light scattering (SLS) and molecular dynamics (MD) simulations were used under equilibrium conditions to analyze the influences of chain length, branching, and hydroxylation on liquid density, liquid viscosity, and surface tension. For probing these effects, 12 pure model systems given by the linear alkanes n-dodecane, n-hexadecane, n-octacosane, n-triacontane, and n-tetracontane, the linear alcohols 1-dodecanol, 1-hexadecanol, and 1,12-dodecanediol, the branched alkanes 2,2,4,4,6,8,8-heptamethylnonane (HMN) and 2,6,10,15,19,23-hexamethyltetracosane (squalane), and the branched alcohols 2-butyl-1-octanol and 2-hexyl-1-decanol were investigated at or close to saturation conditions at temperatures between 298.15 and 573.15 K. Based on the experimental results for the liquid densities, liquid viscosities, and surface tensions with average expanded uncertainties (k = 2) of 0.061, 2.1, and 2.6%, respectively, the performance of the three commonly employed force fields (FFs) TraPPE, MARTINI, and L-OPLS was assessed in MD simulations. To improve the simulation results for the best-performing all-atom L-OPLS FF at larger temperatures, a modified version was suggested. This incorporates a temperature dependence for the energy parameters of the Lennard-Jones potential obtained by calibrating only against the experimental liquid density data of n-dodecane. By transferring this approach to all other systems studied, the modified L-OPLS FF shows now a distinctly better representation of the equilibrium and transport properties of the long alkanes and alcohols, especially at high temperatures.
机译:通过它们的热物理性质的向上决心573.15 K的温度对于本这个工作有助于长线状的表征和支链烷烃和醇,实验技术包括表面光散射(SLS)和分子动力学(MD)模拟,使用下平衡条件来分析液体的密度,液体粘度和表面张力链长度,分支,和羟基化的影响。用于探测这些效果,12个纯模型系统由直链烷烃正四十烷,所述直链醇1-十二烷醇,1-十六烷醇,和1,12-给出正十二烷,正十六烷,正二十八烷,正三十烷,和-dodecanediol中,支链烷烃2,2,4,4,6,8,8-七甲基壬烷(HMN)和2,6,10,15,19,23-六甲基(角鲨烷),和支链醇2-丁基1-辛醇和2-己基-1-癸醇在或接近在上用于液体的密度,粘度液体,并用平均扩展不确定度的表面张力的实验结果和298.15 573.15 K.基于之间的温度下饱和的条件(K进行了调查= 2)为0.061,2.1,和2.6%,分别三种常用的力场(FFS)大霉,MARTINI和L- OPLS的性能在MD模拟评估。为了改善效果最佳的全原子L-OPLS FF在较大的温度下的模拟结果,修改后的版本建议。这结合了用于通过校准仅针对正十二烷的试验液体密度数据中获得的伦纳德 - 琼斯势的能量参数的温度依赖性。通过将这种方法来研究的所有其它系统中,修饰的L-OPLS FF显示现在的长链烷烃和醇的平衡性质和输运性质的明显更好的表示,尤其是在高温下。

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    Friedrich Alexander Univ Erlangen Nurnberg FAU Inst Adv Opt Technol Thermophys Properties AOT TP Dept Chem &

    Biol Engn CBI D-91052 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg FAU Inst Adv Opt Technol Thermophys Properties AOT TP Dept Chem &

    Biol Engn CBI D-91052 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg FAU Inst Adv Opt Technol Thermophys Properties AOT TP Dept Chem &

    Biol Engn CBI D-91052 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg FAU Inst Adv Opt Technol Thermophys Properties AOT TP Dept Chem &

    Biol Engn CBI D-91052 Erlangen Germany;

    Natl Ctr Sci Res Demokritos Inst Nanosci &

    Nanotechnol Mol Thermodynam &

    Modelling Mat Lab GR-15310 Aghia Paraskevi Greece;

    Friedrich Alexander Univ Erlangen Nurnberg FAU Inst Adv Opt Technol Thermophys Properties AOT TP Dept Chem &

    Biol Engn CBI D-91052 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg FAU Inst Adv Opt Technol Thermophys Properties AOT TP Dept Chem &

    Biol Engn CBI D-91052 Erlangen Germany;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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