论文标题
在结构相变的锡硒代单层的热电学
Thermoelectricity of Tin Selenide Monolayers Across a Structural Phase Transition
论文作者
论文摘要
SNSE单层经历了温度引起的二维PNM2 $ _1 \至$ p4/nmm的结构转换,这是由于振动模式的软化而沉淀出来的。热电学的标准理论处理依赖于零温度的声子分散和零温度电子结构 - 无法描述由结构变换引起的热电现象。依靠从{\ em ab intio}分子动力学计算获得的结构数据,这些计算以非标准方式用于告知电子和振动运输系数时,目前的工作建立了一种一般的途径,以了解整个相过渡的热电学。与最近的实验观察结果相似,指出了过渡温度超过过渡温度的高估热电$ ZT $的热电学图,这表明与标准范式预测的值相比,它的$ ZT $较小。它的减少与随后的结构转换时,电导率和晶格导热率的急剧变化有关。尽管在SNSE单层上进行了例证,但该方法没有任何关于维度的内置假设,因此适用于一个,二和三维的任意热电材料。
SnSe monolayers experience a temperature induced two-dimensional Pnm2$_1 \to$ P4/nmm structural transformation precipitated by the softening of vibrational modes. The standard theoretical treatment of thermoelectricity---which relies on a zero temperature phonon dispersion and on a zero temperature electronic structure---is incapable of describing thermoelectric phenomena induced by structural transformations. Relying on structural data obtained from {\em ab initio} molecular dynamics calculations that is utilized in a non-standard way to inform of electronic and vibrational transport coefficients, the present work establishes a general route to understand thermoelectricity across phase transitions. Similar to recent experimental observations pointing to an overestimated thermoelectric figure of merit $ZT$ past the transition temperature, our work indicates a smaller $ZT$ when compared to its value predicted by the standard paradigm. Its decrease is related to the dramatic changes in the electrical conductivity and lattice thermal conductivity as the structural transformation ensues. Though exemplified on a SnSe monolayer, the method does not have any built-in assumptions concerning dimensionality, and thus applicable to arbitrary thermoelectric materials in one, two, and three dimensions.