Issue 14, 2024

High wide-temperature-range thermoelectric performance in n-PbSe integrated with quantum dots

Abstract

PbSe has attracted much attention due to the earth-abundant element Se and low cost. Herein, we present a peak ZT value of 1.44 and an average ZT value of approximately 1.0 in n-type PbSe achieved through Sb doping and introducing excess Cu. A high density of Cu-rich quantum dots was introduced into PbSe through introducing excess Cu, which is revealed by TEM observations. These Cu-rich quantum dots greatly strengthen phonon scattering and contribute to a decrease in the lattice thermal conductivity. Furthermore, the effective mass of the density of states in PbSe is raised by Cu-rich quantum dots, maintaining a moderate Seebeck coefficient. Sb doping and excess Cu substantially increase the carrier concentration, maintaining a high power factor throughout the entire temperature range. For thermoelectric applications at intermediate temperatures, the Pb0.9875Sb0.0125Cu0.0125Se0.99Te0.01 material that has been reported is a great tellurium-free option. These findings provide new avenues for realizing high performance in PbSe through involving quantum dots by a phase separation strategy.

Graphical abstract: High wide-temperature-range thermoelectric performance in n-PbSe integrated with quantum dots

Article information

Article type
Paper
Submitted
24 Jan 2024
Accepted
26 Feb 2024
First published
07 Mar 2024

J. Mater. Chem. A, 2024,12, 8583-8591

High wide-temperature-range thermoelectric performance in n-PbSe integrated with quantum dots

Q. Xia, Q. Zhang, Y. Gong, X. Huang, M. F. Iqbal, D. Xiang, Y. Liu, S. Li, P. Ying and G. Tang, J. Mater. Chem. A, 2024, 12, 8583 DOI: 10.1039/D4TA00541D

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