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锕系元素熔盐:一项机器学习势分子动力学研究。

Actinide Molten Salts: A Machine-Learning Potential Molecular Dynamics Study.

作者信息

Nguyen Manh-Thuong, Rousseau Roger, Paviet Patricia D, Glezakou Vassiliki-Alexandra

机构信息

Pacific Northwest National Laboratory, Richland, Washington 99352, United States.

出版信息

ACS Appl Mater Interfaces. 2021 Nov 17;13(45):53398-53408. doi: 10.1021/acsami.1c11358. Epub 2021 Sep 8.

Abstract

Actinide molten salts represent a class of important materials in nuclear energy. Understanding them at a molecular level is critical for the proper and optimal design of relevant technological applications. Yet, owing to the complexity of electronic structure due to the 5f orbitals, computational studies of heavy elements in condensed phases using ab initio potentials to study the structure and dynamics of these elements embedded in molten salts are difficult. This lack of efficient computational protocols makes it difficult to obtain information on properties that require extensive statistical sampling like transport properties. To tackle this problem, we adopted a machine-learning approach to study ThCl-NaCl and UCl-NaCl binary systems. The machine-learning potential with the density functional theory accuracy allows us to obtain long molecular dynamics trajectories (ns) for large systems (10 atoms) at a considerably low computing cost, thereby efficiently gaining information about their bonding structures, thermodynamics, and dynamics at a range of temperatures. We observed a considerable change in the coordination environments of actinide elements and their characteristic coordination sphere lifetime. Our study also suggests that actinides in molten salts may not follow well-known entropy-scaling laws.

摘要

锕系元素熔盐是核能领域一类重要的材料。在分子层面了解它们对于相关技术应用的合理与优化设计至关重要。然而,由于5f轨道导致电子结构复杂,使用从头算势来研究凝聚相中重元素嵌入熔盐时的结构和动力学的计算研究颇具难度。缺乏高效的计算协议使得获取诸如输运性质等需要大量统计采样的性质信息变得困难。为解决这一问题,我们采用机器学习方法研究ThCl-NaCl和UCl-NaCl二元体系。具有密度泛函理论精度的机器学习势使我们能够以相当低的计算成本为大型体系(10个原子)获得长时间的分子动力学轨迹(纳秒级),从而在一系列温度下有效地获取有关它们的键合结构、热力学和动力学的信息。我们观察到锕系元素的配位环境及其特征配位球寿命发生了显著变化。我们的研究还表明,熔盐中的锕系元素可能不遵循众所周知的熵标度定律。

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