论文标题
DFT洞察含有新的B的212个最大阶段:HF2AB2(a = in,sn)
DFT insights into new B-containing 212 MAX phases: Hf2AB2 (A = In, Sn)
论文作者
论文摘要
212最大相硼是具有增强热机械特性的最大相位家族的新增加。在本文中,已经进行了第一原理计算,以探索预测的热力学稳定最大化合物HF2AB2的机械性能,Vickers硬度,弹性各向异性,热特性和光学性能(A = IN,SN)。将结构特性与可用数据进行比较,以评估计算的有效性。 HF2AB2(A = IN,SN)化合物的机械稳定性是在计算的刚度常数(CIJ)的帮助下建立的。基于键合强度的分析,解释了HF2SNB2的增强机械性能和Vickers硬度的可能原因,其次是状态的电子密度。与HF2AC(a = in,sn)相比,HF2AB2(a = in,sn)的更高的机械强度和Vickers的硬度也是根据电荷密度映射的。 PUGH比,泊松比和库奇压力的值预测了所研究化合物的脆性特征。此外,弹性模量的2D和3D图以及一些良好的各向异性指数研究了标题为“硼化物”的各向异性性质。通过计算DEBYE温度,最小导热率,Grüneisen参数和熔化温度来研究热性能。 HF2AB2(a = in,sn)的热性能也优于HF2AC(a = in,sn)。研究了光学常数,例如介电函数的真实和虚构部分,折射率,消光系数,吸收系数,光导率,反射率和损耗功能。
212 MAX phase borides are new additions to the MAX phase family with enhanced thermo-mechanical properties. In this article, first-principles calculations have been carried out to explore the mechanical properties, Vickers hardness, elastic anisotropy, thermal properties, and optical properties of predicted thermodynamically stable MAX compounds Hf2AB2 (A = In, Sn). The structural properties are compared with the available data to assess the validity of calculations. The mechanical stability of Hf2AB2 (A = In, Sn) compounds is established with the help of the computed stiffness constants (Cij). The possible reason for enhanced mechanical properties and Vickers hardness of Hf2SnB2 is explained based on the analysis of bonding strength, followed by the electronic density of states. Higher mechanical strength and Vickers hardness of Hf2AB2 (A = In, Sn) compared to Hf2AC (A = In, Sn) are also indicated in the light of charge density mapping. The values of Pugh ratio, Poissons ratio and Cauchy pressure predict brittle character of the studied compounds. Besides, the anisotropic nature of the titled borides is investigated by 2D and 3D plots of elastic moduli along with some well established anisotropy indices. Thermal properties were investigated by calculating the Debye temperature, minimum thermal conductivity, Grüneisen parameter, and melting temperature. The thermal properties of Hf2AB2 (A = In, Sn) are also superior to Hf2AC (A = In, Sn). The optical constants such as real and imaginary parts of the dielectric function, refractive index, extinction coefficient, absorption coefficient, photoconductivity, reflectivity, and loss function are investigated.