Related Experiment Video
Updated: Jun 10, 2026

Synthesis of Non-uniformly Pr-doped SrTiO3 Ceramics and Their Thermoelectric Properties
Published on: August 15, 2015
Synergistic Optimization of n-Type PbTe via Resonant Level and Strain-Induced Phonon Scattering for High-Efficiency
Jinqu Feng1,2, Yao Luo2,3, Jianfeng Cai2,4
1School of Material Science and Chemical Engineering, Ningbo University, Ningbo 315211, China.
Abstract:
PbTe stands as a leading n-type thermoelectric material for midtemperature applications, yet its performance is limited by a single conduction valley and high lattice thermal conductivity. To address these constraints, we propose a combined strategy integrating resonant level engineering with dislocation engineering. Precise Br codoping positions the Fermi level to maximize the resonant level effect from In, while Ge alloying introduces a substantial strain field for enhanced phonon scattering. The optimized composition, Pb0.96In0.01Ge0.03Te0.988Br0.012, achieves a peak zT of ∼1.4 at 773 K. A fabricated module utilizing this material demonstrates a conversion efficiency of 10.5% under a 550 K temperature difference, ranking among the highest for PbTe-based modules. This work successfully bridges high-performance material design with practical device efficiency, offering a viable path for advancing thermoelectric technology.

