TY - JOUR
T1 - Highly Anisotropic Thermoelectric Properties of Two-Dimensional As2Te3
AU - Gao, Zhibin
AU - Zhu, Tao
AU - Sun, Kangtai
AU - Wang, Jian Sheng
N1 - Publisher Copyright:
© 2021 American Chemical Society.
PY - 2021/4/27
Y1 - 2021/4/27
N2 - Bulk chalcogenide compounds with chemical formula A2X3 (A = As, Sb, Bi, and X = S, Se, Te) are usually semiconductors, topological insulators, and thermoelectric materials. The layers are stacked together via weak van der Waals interactions and can be exfoliated into thin two-dimensional (2D) layers. Recently, 2D few-layered As2S3 with superior chemical stability was successfully exfoliated in experiments. With a lattice structure to 2D As2S3, monolayer As2Te3 has a heavier atomic mass and a lower lattice thermal conductivity, which is beneficial to the thermoelectric performance. Here, we study the thermoelectric properties of monolayer As2Te3 using ab initio calculations combined with semiclassical Boltzmann transport theory. The optimal figure of merit of 2.36 is achieved for hole doping at 600 K, suggesting that monolayer As2Te3 is a potential competitor among the efficient and anisotropic thermoelectric materials.
AB - Bulk chalcogenide compounds with chemical formula A2X3 (A = As, Sb, Bi, and X = S, Se, Te) are usually semiconductors, topological insulators, and thermoelectric materials. The layers are stacked together via weak van der Waals interactions and can be exfoliated into thin two-dimensional (2D) layers. Recently, 2D few-layered As2S3 with superior chemical stability was successfully exfoliated in experiments. With a lattice structure to 2D As2S3, monolayer As2Te3 has a heavier atomic mass and a lower lattice thermal conductivity, which is beneficial to the thermoelectric performance. Here, we study the thermoelectric properties of monolayer As2Te3 using ab initio calculations combined with semiclassical Boltzmann transport theory. The optimal figure of merit of 2.36 is achieved for hole doping at 600 K, suggesting that monolayer As2Te3 is a potential competitor among the efficient and anisotropic thermoelectric materials.
KW - 2D AsTe
KW - ab initio calculations
KW - anisotropic property
KW - figure of merit ZT
KW - thermoelectric property
UR - https://www.scopus.com/pages/publications/85105048139
U2 - 10.1021/acsaelm.0c01100
DO - 10.1021/acsaelm.0c01100
M3 - 文章
AN - SCOPUS:85105048139
SN - 2637-6113
VL - 3
SP - 1610
EP - 1620
JO - ACS Applied Electronic Materials
JF - ACS Applied Electronic Materials
IS - 4
ER -