Pb6Ba3Si2S8I10:一种具有近似二维结构和宽带间隙的新型硫化物
Wang Zhao1,2, Jiazheng Zhou1, Linan Wang1,2
1Research Center for Crystal Materials; CAS Key Laboratory of Functional Materials and Devices for Special Environments, Xinjiang Technical Institute of Physics & Chemistry, CAS, Urumqi 830011, China. lijunjie@ms.xjb.ac.cn.
Dalton transactions (Cambridge, England : 2003)
|October 8, 2024
概括
一种新的基硫化物Pb6Ba3Si2S8I10被合成了创纪录的2.80 eV带间隙. 这一发现突出了利用混合离子和尺寸缩小调整化物特性的一种策略.
科学领域:
- 材料科学 材料科学 材料科学
- 无机化学 无机化学 有机化学
- 固态化学 固态化学
背景情况:
- 基于的石化素具有多样化的结构和特性.
- 硫化物是一种材料类,在光电子学中具有潜在的应用.
- 调整硫化物结构和电子特性对于开发新的功能性材料至关重要.
研究的目的:
- 设计和合成一种新的宽带隙基硫化物.
- 为了研究新化合物的结构和电子特性.
- 探索混合离子和尺寸缩小对硫化物特性的影响.
主要方法:
- 实验合成的流量方法.
- 单晶X射线衍射用于结构确定.
- 紫外线-Vis光谱仪用于频段间隙测量.
主要成果:
- 一种新的近二维的基硫化物Pb6Ba3Si2S8I10已成功合成.
- 该化合物结晶在R3̄c空间组中,具有[SiS4]四面体和[PbI5S2]多面体单位.
- 测定了2.80 eV的实验光学带间隙,这是以为基础的硫化物报告的最大差距.
结论:
- 混合离子和尺寸减小策略在创建新型硫化物结构方面是有效的.
- 加入高度电正的Ba原子可以调节结构框架的尺寸.
- 这项工作扩大了基硫化物的结构和性能多样性,并为未来的材料设计提供了洞察力.
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