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Toward Predictive Molecular Dynamics Simulations of Asphaltenes in Toluene and Heptane

机译:预测甲苯和庚烷中沥青质的分子动力学模拟

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The conventional definition of asphaltenes is based on their solubility in toluene and their insolubility in heptane. We have utilized this definition to study the influence of partial charge parametrization on the aggregation behavior of asphaltenes using classical atomistic molecular dynamics simulations performed on the microsecond time scale. Under consideration here are toluene- and heptane-based systems with different partial charges parametrized using the general AMBER force field (GAFF). Systems with standard GAFF partial charges calculated by the AM1-BCC and HF/6-31G*(RESP) methods were simulated alongside systems without partial charges. The partial charges implemented differ in terms of the resulting electrical negativity of the asphaltene polyaromatic core, with the AM1-BCC method giving the greatest magnitude of the total core charge. Based on our analysis of the molecular relaxation and orientation, and on the aggregation behavior of asphaltenes in toluene and heptane, we proposed to use the partial charges obtained by the AM1-BCC method for the study of asphaltene aggregates. A good agreement with available experimental data was observed on the sizes of the aggregates, their fractal dimensions, and the solvent entrainment for the model asphaltenes in toluene and heptane. From the results obtained, we conclude that for a better predictive ability, simulation parameters must be carefully chosen, with particular attention paid to the partial charges owing to their influence on the electrical negativity of the asphaltene core and on the asphaltenes aggregation.
机译:沥青质的常规定义是基于它们在甲苯中的溶解度和在庚烷中的不溶性。我们已经利用该定义研究了在微秒级上执行的经典原子分子动力学模拟,研究了部分电荷参数化对沥青质聚集行为的影响。这里考虑的是使用通用AMBER力场(GAFF)参数化的具有不同部分电荷的基于甲苯和庚烷的系统。通过AM1-BCC和HF / 6-31G *(RESP)方法计算的具有标准GAFF局部电荷的系统与没有局部电荷的系统进行了模拟。在实现的部分电荷方面,沥青质聚芳烃核的电负性有所不同,其中AM1-BCC方法可提供最大的总核电荷量。基于对分子弛豫和取向的分析,以及沥青质在甲苯和庚烷中的聚集行为,我们建议使用AM1-BCC方法获得的部分电荷来研究沥青质聚集体。在聚集体的大小,它们的分形维数以及模型沥青质在甲苯和庚烷中的溶剂夹带方面,观察到与现有实验数据的良好一致性。根据获得的结果,我们得出结论,要获得更好的预测能力,必须谨慎选择模拟参数,由于局部电荷会影响沥青质岩心的电负性和沥青质聚集,因此应特别注意部分电荷。

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