具有可调谐磁性的二维氮化硼多晶体的初步原理研究

Liping Qiao, Zhongqi Ma, Fulong Yan, Sake Wang, Qingyang Fan
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摘要

通过第一原理计算,本文构建了两种掺杂二维(2D)BN(氮化硼)多晶体。所有 B6N6、B5N6Al 和 B5N6C 薄片都是基于混合函数的间接带隙半导体材料。各向异性计算结果表明,B6N6、B5N6Al 和 B5N6C 薄片的杨氏模量(E)和泊松比(v)在 xy 平面上是各向异性的。此外,还研究了 B6N6、B5N6Al 和 B5N6C 薄片的磁性能。根据磁性能的计算结果,B6N6 薄片不显示磁性,而在 BN 薄片中掺入碳原子后则显示出弱磁性。本文探讨了掺杂不同原子对二维 BN 薄膜基本物理性质的影响机制。它不仅构建了结构与性能之间的关系,还为 BN 材料的性能调控提供了理论支持。
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A First-Principle Study of Two-Dimensional Boron Nitride Polymorph with Tunable Magnetism
Using the first-principles calculation, two doping two-dimensional (2D) BN (boron nitride) polymorphs are constructed in this work. The two doping 2D BN polymorphs B5N6Al and B5N6C sheets are thermally stable under 500 K. All the B6N6, B5N6Al, and B5N6C sheets are semiconductor materials with indirect band gaps on the basis of a hybrid functional. The anisotropic calculation results indicate that Young’s modulus (E) and Poisson’s ratio (v) of the B6N6, B5N6Al, and B5N6C sheets are anisotropic in the xy plane. In addition, the magnetic properties of the B6N6, B5N6Al, and B5N6C sheets have also been investigated. According to the calculation of the magnetic properties, B6N6 sheet does not exhibit magnetism, while it shows weak magnetism after doping carbon atom to the BN sheet. This paper explores the influence mechanism of doping different atoms on the basic physical properties of two-dimensional BN sheets. It not only constructs a relationship between structure and performance but also provides theoretical support for the performance regulation of BN materials.
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