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Enhanced Thermoelectric Performance of GeTe Materials via Compositing Fe3O4 Nanoparticles

delete2025-12-01
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PRE
AI
S
Si-Jiang Huang
C
Chongyu Wang
X
Xing Yang
T
Tianyu Yang *
梁好 cover
梁好 (Hao Liang)
Z
Ze Li
张艺欣 (Yixin Zhang)
J
Jing Feng
Z
Zhen‐Hua Ge *
DOI:10.1021/acsami.5c19289delete
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Abstract

Abstract

En 中文
Recently, the ecofriendly thermoelectric (TE) material GeTe has garnered significant attention due to its excellent TE properties and potential applications. Despite the material’s remarkable electrical transport properties, its intrinsically high carrier concentration limits the comprehensive improvement of TE properties. In this study, Fe3O4 nanoparticles were incorporated into a Ge0.94Sb0.06Te matrix to optimize its carrier concentration, resulting in a significant improvement in electrical conductivity (σ) and power factor (PF). The Ge0.94Sb0.06Te + 0.5 wt % Fe3O4 composite exhibited the maximum σ and PF values of 3020 S cm–1 and 5000 μW m–1 K–2, respectively. The Fe3O4 precipitates accumulated at the grain boundaries, leading to a significant reduction in the thermal conductivity. Particularly, the lattice thermal conductivity reached a minimum value of 0.35 W m–1 K–1 at 773 K in the Ge0.94Sb0.06Te + 0.5 wt % Fe3O4 sample. Consequently, the highest figure of merit (ZT) of ≈2.0 was achieved at 773 K. Additionally, the average ZT over the operating temperature range of 323–773 K was approximately 1.2, and the single-leg efficiency reached about 8.4%, representing improvements of 110 and 200%, respectively, compared to the pure sample. This strategy effectively enables structural design at grain boundaries and can also be extended to other material systems.

Journal

ACS Applied Materials and Interfaces cover
ACS Applied Materials and Interfaces
IF:
8.2
Papers:
6.1W
Citations:
38.7W

Organization

K
Kunming University of Science and Technology
Scholars:
9.1K
Papers: 2.5K
Citations: 2.1W
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