论文标题
SB $ _2 $ S $ _3 $,BI $ _2 $ S $ _3 $和SB $ _2 $ _2 $ SE $ _3 $的稳定性的理论研究
Theoretical study of the stability of the tetradymite-like phases of Sb$_2$S$_3$, Bi$_2$S$_3$, and Sb$_2$Se$_3$
论文作者
论文摘要
我们报告了\ textit {pnma}和\ textit {r-3m}阶段的比较理论研究,sb $ _2 $ _2 $ s $ _3 $,bi $ _2 $ s $ _3 $,sb $ _2 $ _2 $ _2 $ SE $ _3 $ _3 $ _3 $ to Ambient压力接近环境压力。 我们在0 k时的焓计算表明,在环境压力下,\ textit {r-3m}(类似四亚接受的)阶段SB $ _2 $ _2 $ _2 $ se $ _3 $比\ textit {pnma}阶段更稳定,与SB $ _2 $ _2 $ _3 $ _3 $ _3 $ _2 $ _3 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2计算中采用的交换相关功能。 SB $ _2 $ SE $ _3 $的结果与实验相矛盾,这些实验通常在\ textit {pnma}阶段中生长所有三个化合物。 考虑到单位电池量和声子频率的温度依赖性,通过自由能计算进一步证实了这一结果。 晶格动力学和弹性张量计算进一步表明,\ textit {pnma}和\ textit {r-3m}阶段Sb $ _2 $ _2 $ SE $ _3 $在零施加的压力下动态且机械稳定。 由于这些结果表明SB $ _2 $ _2 $ SE $ _3 $的\ textit {R-3M}阶段的形成应该是可行的,因此我们提供了理论晶体结构以及模拟的拉曼和红外光谱,以帮助其识别。我们还讨论了已声称已合成类似四亚接受的SB $ _2 $ SE $ _3 $的两项已发表作品的结果。 最后,根据其van der waals间隙和X-X-X In-Plane几何形状,分析了三个组15 \ textit {a $ _2 $ x $ _3 $} \ textit {R-3M}阶段的稳定性。
We report a comparative theoretical study of the \textit{Pnma} and \textit{R-3m} phases of Sb$_2$S$_3$, Bi$_2$S$_3$, and Sb$_2$Se$_3$ close to ambient pressure. Our enthalpy calculations at 0 K show that at ambient pressure the \textit{R-3m} (tetradymite-like) phase of Sb$_2$Se$_3$ is energetically more stable than the \textit{Pnma} phase, contrary to what is observed for Sb$_2$S$_3$ and Bi$_2$S$_3$, and irrespective of the exchange-correlation functional employed in the calculations. The result for Sb$_2$Se$_3$ is in contradiction to experiments where all three compounds are usually grown in the \textit{Pnma} phase. This result is further confirmed by free-energy calculations taking into account the temperature dependence of the unit-cell volumes and phonon frequencies. Lattice dynamics and elastic tensor calculations further show that both \textit{Pnma} and \textit{R-3m} phases of Sb$_2$Se$_3$ are dynamically and mechanically stable at zero applied pressure. Since these results suggest that the formation of the \textit{R-3m} phase for Sb$_2$Se$_3$ should be feasible at close to ambient conditions, we provide a theoretical crystal structure and simulated Raman and infrared spectra to help in its identification. We also discuss the results of the two published works that have claimed to have synthesized tetradymite-like Sb$_2$Se$_3$. Finally, the stability of the \textit{R-3m} phase across the three group-15 \textit{A$_2$X$_3$} sesquichalcogenides is analysed based on their van der Waals gap and X-X in-plane geometry.