Mamani Flores Efracio, Ramirez Rivera Victor José, Mamani Gonzalo Fredy, Ordonez-Miranda Jose, Sambrano Julio R, Lucio Moreira Mario, Piotrowski Maurício Jeomar
Department of Physics, Jorge Basadre Grohmann National University, Tacna, Perú.
LIMMS, CNRS-IIS IRL 2820, The University of Tokyo, Tokyo, 153-8505, Japan.
Sci Rep. 2024 Jul 19;14(1):16648. doi: 10.1038/s41598-024-67039-0.
The quest for efficient thermoelectric materials has intensified with the advent of novel Janus monolayers exhibiting exceptional thermoelectric parameters. In this work, we comprehensively investigate the structural, electronic, transport, phonon, and thermoelectric properties of novel Janus -Pb XY (X=S, Se; Y=Se, Te; X Y) monolayers using density functional theory combined with the Boltzmann transport equation. Our findings unveil the energetic, dynamic, thermal, and mechanical stability of these monolayers, along with their remarkable thermoelectric performance. Remarkably, the p-type -Pb SeTe monolayer exhibits an outstanding figure of merit (ZT) of 6.88 at 800 K, attributed to its intrinsically low lattice thermal conductivity of 0.162 Wm K arising from strong phonon scattering, low group velocity, low phonon relaxation time, and a high Grüneisen parameter. Furthermore, these monolayers demonstrate high Seebeck coefficients and electrical conductivities, making them promising for efficient charge transport and thermoelectric energy conversion. Our results highlight the immense potential of Janus -Pb XY monolayers as promising candidates for high-temperature thermoelectric applications and open up exciting avenues for further exploration of these novel two-dimensional materials in energy-related technologies.
随着具有优异热电参数的新型Janus单层材料的出现,对高效热电材料的探索日益激烈。在这项工作中,我们结合密度泛函理论和玻尔兹曼输运方程,全面研究了新型Janus -Pb XY(X = S,Se;Y = Se,Te;X ≠ Y)单层材料的结构、电子、输运、声子和热电性质。我们的研究结果揭示了这些单层材料的能量、动力学、热学和力学稳定性,以及它们卓越的热电性能。值得注意的是,p型 -Pb SeTe单层在800 K时表现出高达6.88的优异优值(ZT),这归因于其内在的低晶格热导率0.162 Wm⁻¹K⁻¹,这是由强声子散射、低群速度、低声子弛豫时间和高格林艾森参数引起的。此外,这些单层材料表现出高塞贝克系数和电导率,使其有望用于高效电荷输运和热电能量转换。我们的结果突出了Janus -Pb XY单层作为高温热电应用有前途的候选材料的巨大潜力,并为在能源相关技术中进一步探索这些新型二维材料开辟了令人兴奋的途径。