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首页> 外文期刊>Journal of chemical information and modeling >Determination of the Free Energies of Mixing of Organic Solutions through a Combined Molecular Dynamics and Bayesian Statistics Approach
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Determination of the Free Energies of Mixing of Organic Solutions through a Combined Molecular Dynamics and Bayesian Statistics Approach

机译:通过组合分子动力学和贝叶斯统计方法测定有机溶液混合的自由能

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摘要

As new generations of thin-film semiconductors are moving toward solution-based processing, the development of printing formulations will require information pertaining to the free energies of mixing of complex mixtures. From the standpoint of in silico material design, this move necessitates the development of methods that can accurately and quickly evaluate these formulations in order to maximize processing speed and reproducibility. Here, we make use of molecular dynamics (MD) simulations, in combination with the two-phase thermodynamic (2PT) model, to explore the free energy of mixing surfaces for a series of halogenated solvents and high-boiling point solvent additives used in the development of thin-film organic semiconductors. Although the combined methods generally show good agreement with available experimental data, the computational cost to traverse the free-energy landscape is considerable. Hence, we demonstrate how a Bayesian optimization scheme, coupled with the MD and 2PT approaches, can drastically reduce the number of simulations required, in turn shrinking both the computational cost and time.
机译:由于新一代薄膜半导体正在朝向基于溶液的处理,印刷配方的发展将需要与复合混合物混合混合的自由能有关的信息。从Silico材料设计的角度来看,这种移动需要开发可以准确,快速评估这些配方的方法,以便最大化处理速度和再现性。在这里,我们利用分子动力学(MD)模拟,与两相热力学(2PT)模型组合,探讨混合表面的自由能,用于一系列卤化溶剂和高沸点溶剂添加剂薄膜有机半导体的研制。虽然组合方法通常与可用的实验数据显示良好的一致性,但是遍历自由能景观的计算成本是相当大的。因此,我们展示了如何与MD和2PT方法耦合的贝叶斯优化方案如何大大减少所需的模拟次数,反过来缩小计算成本和时间。

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