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首页> 外文期刊>ACS nano >Atomistic Insights into Nucleation and Formation of Hexagonal Boron Nitride on Nickel from First-Principles-Based Reactive Molecular Dynamics Simulations
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Atomistic Insights into Nucleation and Formation of Hexagonal Boron Nitride on Nickel from First-Principles-Based Reactive Molecular Dynamics Simulations

机译:从基于第一原理的反应分子动力学模拟中镍含有六方硼氮化物的核心的原子洞察

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摘要

Atomistic-scale insights into the growth of a continuous, atomically thin hexagonal boron nitride (hBN) lattice from elemental boron and nitrogen on Ni substrates were obtained from multiscale modeling combining density functional theory (DFT) and reactive molecular dynamics. The quantum mechanical calculations focused on the adsorption and reaction energetics for the hBN building-block species, i.e., atomic B, N, BxNy (x, y = 1, 2), on Ni(111) and Ni(211), and the diffusion pathways of elemental B and N on these slab model surfaces and in the sublayer. B can diffuse competitively on both the surface and in the sublayer, while N diffuses strictly on the substrate surface. The DFT data were then used to generate a classical description of the Ni-B and Ni-N pair interactions within the formulation of the reactive force field, ReaxFF. Using the potential developed from this work, the elementary nucleation and growth process of an hBN monolayer structure from elemental B and N is shown at the atomistic scale. The nucleation initiates from the growth of linear BN chains, which evolve into branched and then hexagonal lattices. Subsequent DFT calculations confirmed the structure evolution energetically and validate the self-consistency of this multiscale modeling framework. On the basis of this framework, the fundamental aspects regarding crystal quality and the role of temperature and substrates used during hBN growth can also be understood.
机译:从多尺度建模结合密度泛函理论(DFT)和反应性分子动力学,获得了来自元素硼和Ni基材上的连续的原子薄六方氮化物(HBN)格的生长的原子标度洞察。 Quantum机械计算集中于HBN构建块物种的吸附和反应能量,即原子B,N,BXNY(X,Y = 1,2),Ni(111)和Ni(211),以及元素B和N的扩散途径在这些板坯模型表面和子层中。 B可以在表面和子层中竞争地区竞争地区,而n严格地扩散在基板表面上。然后使用DFT数据来生成在反应力场的制剂中的Ni-B和Ni-N对相互作用的经典描述,Reaxff。利用从该工作中产生的潜力,以原子尺度示出了来自元素B和N的HBN单层结构的基本成核和生长过程。成核从线性BN链的生长引发,其演变成支链,然后进化到六边形格子中。随后的DFT计算能够积极确认结构演变,并验证该多尺度建模框架的自我一致性。在该框架的基础上,还可以理解关于晶体质量的基本方面和HBN生长期间使用的温度和衬底的作用。

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