Structure/Property Relations Group (MST-8), Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Phys Rev Lett. 2009 Oct 30;103(18):185501. doi: 10.1103/PhysRevLett.103.185501. Epub 2009 Oct 28.
We perform first-principles density functional calculations on a newly discovered tantalum nitride with an orthorhombic U2S3 structure to assess its thermodynamic and mechanical stabilities. Our random search unveils a tetragonal Ta2N3 structure that is energetically more favorable than an orthorhombic Ta2N3 at zero pressure. We predict that the tetragonal Ta2N3 transforms into the orthorhombic phase above a relatively low pressure of 7.7 GPa. Single-crystal elastic constant calculations reveal that orthorhombic Ta2N3 is mechanically unstable because of a negative c66. Our calculations suggest that minor oxygen substitution for nitrogen plays an important role in stabilizing the orthorhombic Ta2N3 structure.
我们对一种新发现的具有正交 U2S3 结构的氮化钽进行了第一性原理密度泛函计算,以评估其热力学和机械稳定性。我们的随机搜索揭示了一种四方 Ta2N3 结构,在零压下比正交 Ta2N3 更有优势。我们预测,四方 Ta2N3 在相对较低的 7.7 GPa 压力以上会转变为正交相。单晶弹性常数计算表明,由于 c66 为负,正交 Ta2N3 在力学上是不稳定的。我们的计算表明,少量氧取代氮在稳定正交 Ta2N3 结构方面起着重要作用。