温度依赖的激发状态,用于检测二维 (II) 酸矿的可逆相变
Mahboubeh Jamshidi1, James M Gardner1
1Department of Chemistry, Division of Applied Physical Chemistry, KTH Royal Institute of Technology, SE-100 44 Stockholm, Sweden. mahjam@kth.se.
Dalton transactions (Cambridge, England : 2003)
|June 6, 2024
概括
耐水性二维酸罗夫斯基特表现出100°C以下的固态相变. 较长的基链增加过渡温度,影响光伏和光子应用的光学特性.
科学领域:
- 材料科学 材料科学 材料科学
- 固态化学 固态化学
- 光物理学的光学物理学
背景情况:
- 由于其稳定性,二维化矿对光伏和光子学具有前景.
- 这些材料在100°C以下经历固态相变.
- 了解这些转换是优化它们性能的关键.
研究的目的:
- 为了研究n = 14,16和18的[(C2H2NH3) 2PbI4]中的多重相过渡.
- 为了探索相位转换期间的热反应和光学性能变化.
- 为了将基链长度与相位过渡行为和兴奋状态动态相关联.
主要方法:
- 温度依赖的稳定状态光发光学 (PL) 光谱学.
- 温度依赖的时间解析光发光学 (TRPL) 光谱学.
- 从 -196 °C 到 +90 °C 进行的测量.
主要成果:
- 在室温和高温之间观察到可逆的相位过渡.
- 较长的基链导致更高的相位过渡温度.
- 阶段过渡影响了光学特性和发射颜色.
- 衰变常数在不同阶段是相似的,表明主导的无机贡献.
结论:
- 阶段过渡温度随着更长的基链而增加,这是由于混乱和对称性增加.
- PL和TRPL是检测二维矿中相变的有效技术.
- 详细了解不同阶段的兴奋状态可以指导太阳能电池和显示器中的应用.
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