在立方相GeMnTe2热电材料中构建局部的范德瓦尔斯差距
Mingrui Zhang1, Lingling Wei2, Tingting Yang3
1Key Laboratory for Macromolecular Science of Shaanxi Province and Shaanxi Key Laboratory for Advanced Energy Devices, School of Materials Science and Engineering, Shaanxi Normal University, Xi'an, 710119, China.
Advanced science (Weinheim, Baden-Wurttemberg, Germany)
|November 3, 2025
概括
立方体GeMnTe2为热电器件提供了一个具有成本效益的替代方案. 使用Sb2Te3和Pb替代的合金通过优化导热率和电特性显著提高了其性能.
科学领域:
- 材料科学 材料科学 材料科学
- 固态物理 固态物理
- 能源转换 能源转换
背景情况:
- 罗姆体GeTe是中等温度的领先热电材料.
- 立方体GeMnTe2提供了一个低成本的替代方案,具有更高的结构对称性.
- 阶段稳定性和工程潜力是立方GeMnTe2.2的关键优势.
研究的目的:
- 为了提高立方GeMnTe2.2的热电性能.
- 研究Sb2Te3合金和Pb替代的作用.
- 探索改善热电材料的策略,用于中温应用.
主要方法:
- 合成Sb2Te3合金和Pb替代立方GeMnTe2.2.的合成方法
- 结构,电气和热性能的表征.
- 对声子散射机制和带结构修改的分析.
主要成果:
- 在773 K.取得了≈1.5的峰值值 (ZT) 773 K.
- 在323-823 K范围内获得了平均ZT的≈0.96.
- Sb2Te3合金制造了局部化的范德瓦尔斯隙,降低了晶格导热率.
- Pb替换优化了孔度,以提高功率因子.
结论:
- 立方体GeMnTe2显示出优越的热电性能,与体GeTe相比.
- 局部的范德瓦尔斯隙有效地增强了热电特性.
- 这种方法为开发先进的立方体或伪立方体热电材料提供了途径.
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