论文标题

与常规最大相位碳纤维M2SC(M = ZR,HF和NB)相比,新的Max Phase M2SB(M = ZR,HF和NB)的物理特性:综合见解

Physical properties of new MAX phase borides M2SB (M = Zr, Hf and Nb) in comparison with conventional MAX phase carbides M2SC (M = Zr, Hf and Nb): Comprehensive insights

论文作者

Ali, M. A., Hossain, M. M., Uddin, M. M., Hossain, M. A., Islam, A. K. M. A., Naqib, S. H.

论文摘要

在本文中,已经通过第一原理技术对最近合成的最大硼M2SB(M = ZR,HF和NB)进行了详细研究。首次考虑对机械硬度,弹性各向异性,光学特性,动力学稳定性和热特性的研究。发现刚度常数和弹性模量的估计值与可用结果非常吻合。计算微硬度和宏硬度(Hmicro和Hmacro)参数。还使用Mulliken种群分析计算了Vickers硬度。状态和电荷密度映射的电子密度用于解释所研究三元硼化物之间刚度常数,弹性模量和硬度参数的变化。发现NB2SB化合物表现出最佳的机械性能组合。使用Mulliken种群分析来解释这些硼化物中共价和离子键合的混合物。计算了2D和3D表示观察到的扬s模量,压缩性,剪切模量和泊松比的方向依赖值,并计算了不同的各向异性因素。计算和分析重要的光学常数。从DOS和光学特性确认了研究的硼化物的金属性质。反射率光谱揭示了ZR2SB作为涂层材料的潜在用途,以减少太阳能加热。从声子分散曲线确认,研究的硼化物是动态稳定的。还已经计算并分析了特征热力学特性。还计算了相应211个最大碳化物的物理性能与标题为三元硼的物理特性。

In this article, a detailed study of the recently synthesized MAX phase borides M2SB (M = Zr, Hf and Nb) has been performed via first principles technique. Investigation of mechanical hardness, elastic anisotropy, optical properties, dynamical stability and thermal properties are considered for the first time. The estimated values of stiffness constants and elastic moduli are found in good agreement with available results. The micro and macro hardness (Hmicro and Hmacro) parameters are calculated. The Vickers hardness is also calculated using Mulliken population analysis. The electronic density of states and charge density mapping are used to explain the variation of stiffness constants, elastic moduli and hardness parameters among the studied ternary borides. The Nb2SB compound is found to show best combination of mechanical properties. Mixture of covalent and ionic bonding within these borides is explained using Mulliken population analysis. The direction dependent values of Youngs modulus, compressibility, shear modulus and Poissons ratio are visualized by 2D and 3D representations and different anisotropic factors are calculated. The important optical constants are calculated and analyzed. The metallic nature of the studied borides is confirmed from the DOS and optical properties. The reflectivity spectra reveal the potential use of Zr2SB as coating materials to diminish solar heating. The studied borides are dynamically stable as confirmed from the phonon dispersion curves. The characteristic thermodynamic properties have also been calculated and analyzed. The physical properties of corresponding 211 MAX phase carbides are also calculated for comparison with those of the titled ternary borides.

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