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ReaxFF reactive force field development and applications for molecular dynamics simulations of ammonia borane dehydrogenation and combustion

机译:ReaxFF反作用力场的发展及其在氨硼烷脱氢和燃烧分子动力学模拟中的应用

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摘要

Ammonia borane (AB) has attracted significant attention due to its high hydrogen content (19.6% by mass). To investigate the reaction mechanism associated with the combustion of AB, a reactive force field (ReaxFF) has been developed for use in molecular dynamics (MD) simulations. The ReaxFF parameters have been derived directly from quantum mechanical data (QM). NVT-MD simulations of single- and polymolecular AB thermolysis were conducted in order to validate the force field. The release of the first equivalent H_2 is a unimolecular reaction, and MD simulations show an activation energy of 26.36 kcal mol~('1), which is in good agreement with experimental results. The release of the second H_2 is also a unimolecular reaction; however, the release of a third H_2 requires the formation of a B'N polymer. Similar simulations were conducted with a boron and oxygen system, since the oxidation of boron will be an integral step in AB combustion, and show good agreement with the established mechanism for this system. At low temperatures, boron atoms agglomerate into a cluster, which is oxidized at higher temperatures, eventually forming condensed and gas phase boron'oxide-species. These MD results provide confidence that ReaxFF can properly model the oxidation of AB and provide mechanistic insight into the AB dehydrogation and combustion reactions.
机译:氨硼烷(AB)因其高氢含量(19.6质量%)而备受关注。为了研究与AB燃烧相关的反应机理,已开发出反作用力场(ReaxFF)用于分子动力学(MD)模拟。 ReaxFF参数直接从量子力学数据(QM)中得出。为了验证力场,对单分子和多分子AB热解进行了NVT-MD模拟。第一当量H_2的释放是单分子反应,MD模拟显示活化能为26.36 kcal mol〜('1),与实验结果吻合良好。第二个H_2的释放也是单分子反应。然而,第三H_2的释放需要形成B'N聚合物。由于硼的氧化将是AB燃烧必不可少的步骤,因此对硼和氧系统进行了类似的模拟,并且表明与该系统已建立的机理非常吻合。在低温下,硼原子团聚成团,然后在更高的温度下被氧化,最终形成冷凝态和气相的氧化硼物种。这些MD结果提供了ReaxFF可以正确模拟AB氧化并为AB脱氢和燃烧反应提供机械原理的信心。

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