纳米尺度的不均质性和FeSe S 中的相关性强度的演变
Yu Liu1,2, Aifeng Wang1,3, Qianheng Du1,4,5
1Condensed Matter Physics and Materials Science Department, Brookhaven National Laboratory, Upton, NY 11973 USA.
Nano convergence
|December 22, 2023
概括
这项研究揭示了铁硫化物 (FeSeS) 单晶中的纳米尺度障碍如何影响热电性质. 增加硫含量增强了电子相关性,影响了热力,其中障碍发挥了关键作用.
科学领域:
- 凝聚物质物理学 凝聚物质物理学
- 材料科学 材料科学 材料科学
- 固态化学 固态化学
背景情况:
- 热电材料对于能源转换技术至关重要.
- 硫化铁化 (FeSeS) 具有复杂的电子性质,由成分和结构影响.
- 了解纳米尺度障碍是优化热电性能的关键.
研究的目的:
- 研究纳米级不均质性和混乱对FeSeS单晶体热电性质的影响.
- 分析电子相关强度的演变与FeSeS中的硫替代.
- 为了将纳米结构细节与观察到的热电行为相关联.
主要方法:
- 合成具有不同硫含量的FeSeS单晶.
- 测量取决于温度的热电特性,包括热电力.
- 扫描传输电子显微镜 (STEM) 探测纳米级的Se/S原子乱.
主要成果:
- 热电的形特征在特定的硫度 (x=0.12,0.14) 增强在内马特区域内.
- 这种增强与增加轨道选择性电子相关性有关.
- 这一特征在阴性临界点以上被抑制,硫含量更高,与纳米级Se/S障碍相关.
结论:
- 在FeSeS中纳米级的Se/S原子乱显著影响其热电性质.
- 轨道选择性电子相关性在观察到的热电行为中起着关键作用.
- 该研究提供了关于通过FeSeS的受控障碍和电子相关性来调整热电性能的见解.
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