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Size distribution of associated clusters in liquid alcohols: Interpretation of simulation results in the frame of SAFT approach

机译:液体醇中相关簇的尺寸分布:在SAFT方法框架内对模拟结果的解释

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The size distribution and topology of associated clusters for primary alcohols is studied using molecular dynamics simulations. Liquid ethanol, propanol, butanol, hexanol, and octanol are simulated at pressure P = 1 bar and temperatures T = 300 K, T = 350 K, and T = 400 K. The fractions of molecules with different sets of hydrogen bonded partners, the size of associated cluster and the site-site distribution functions between atoms participating on hydrogen bonding are extracted from simulated trajectories. For all alcohols longer than ethanol, the length of the alkyl chain has only a marginal effect on the association. Consequently, related properties like coordination numbers of hydroxyl group, size distribution of associates, or fractions of differently coordinated alcohol molecules are independent on the molecular size. Although we employed a force-field without involved polarizability, we observe a positive cooperativity of hydrogen bonding simply as a consequence of steric and electrostatic interactions. The size and topology of associates is analyzed within the frame of 3B model of statistical association fluid theory. Although this approach enables good thermodynamic description of systems containing associating compounds, several insufficiencies appear in the description at molecular level.
机译:使用分子动力学模拟研究了伯醇的相关簇的尺寸分布和拓扑。液态乙醇,丙醇,丁醇,己醇和辛醇在压力P = 1 bar和温度T = 300 K,T = 350 K和T = 400 K的条件下进行模拟。从模拟轨迹中提取了相关簇的大小和参与氢键结合的原子之间的位点-位置分布函数。对于所有比乙醇长的醇,烷基链的长度仅对缔合有边际影响。因此,诸如羟基的配位数,缔合体的大小分布或不同配位的醇分子的级分之类的相关性质与分子大小无关。尽管我们采用了不涉及极化率的力场,但我们仅由于空间和静电相互作用而观察到氢键的正合作性。在统计协会流体理论的3B模型框架内分析了协会的规模和拓扑。尽管此方法可以很好地描述包含缔合化合物的系统的热力学,但在分子水平上仍存在一些不足。

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