TY - JOUR
T1 - Strategies to Improve the Thermoelectric Figure of Merit in Thermoelectric Functional Materials
AU - Sun, Yan
AU - Liu, Yue
AU - Li, Ruichuan
AU - Li, Yanshuai
AU - Bai, Shizheng
N1 - Publisher Copyright:
Copyright © 2022 Sun, Liu, Li, Li and Bai.
PY - 2022/5/19
Y1 - 2022/5/19
N2 - In recent years, thermoelectric functional materials have been widely concerned in temperature difference power generation, electric refrigeration and integrated circui, and so on. In this paper, the design and research progress of thermoelectric materials around lifting ZT value in recent years are reviewed. Optimizing the carrier concentration to improve the Seebeck coefficient, the steady improvement of carrier mobility and the influence of energy band engineering on thermoelectric performance are discussed. In addition, the impact of lattice thermal conductivity on ZT value is also significant. We discuss the general law that the synergistic effect of different dimensions, scales, and crystal structures can reduce lattice thermal conductivity, and introduce the new application of electro-acoustic decoupling in thermoelectric materials. Finally, the research of thermoelectric materials is summarized and prospected in the hope of providing practical ideas for expanding the application and scale industrialization of thermoelectric devices.
AB - In recent years, thermoelectric functional materials have been widely concerned in temperature difference power generation, electric refrigeration and integrated circui, and so on. In this paper, the design and research progress of thermoelectric materials around lifting ZT value in recent years are reviewed. Optimizing the carrier concentration to improve the Seebeck coefficient, the steady improvement of carrier mobility and the influence of energy band engineering on thermoelectric performance are discussed. In addition, the impact of lattice thermal conductivity on ZT value is also significant. We discuss the general law that the synergistic effect of different dimensions, scales, and crystal structures can reduce lattice thermal conductivity, and introduce the new application of electro-acoustic decoupling in thermoelectric materials. Finally, the research of thermoelectric materials is summarized and prospected in the hope of providing practical ideas for expanding the application and scale industrialization of thermoelectric devices.
KW - electrical conductivity
KW - seebeck coefficient
KW - thermal conductivity
KW - thermoelectric materials
KW - ZT value
UR - http://www.scopus.com/inward/record.url?scp=85131667996&partnerID=8YFLogxK
U2 - 10.3389/fchem.2022.865281
DO - 10.3389/fchem.2022.865281
M3 - Review article
AN - SCOPUS:85131667996
SN - 2296-2646
VL - 10
JO - Frontiers in Chemistry
JF - Frontiers in Chemistry
M1 - 865281
ER -