通过金属有机框架中的染色体包装控制多光子吸收效率
David C Mayer1, Aurora Manzi2, Raghavender Medishetty3
1Chair of Inorganic and Metal-Organic Chemistry, Department of Chemistry , Technical University of Munich , Lichtenbergstraße 4 , 85748 Garching , Germany.
Journal of the American Chemical Society
|July 13, 2019
概括
这项研究探讨了晶体结构如何影响新金属有机框架 (MOF) 的光发射. 在MOF中优化染色体排列是设计高效的两光子吸收材料的关键.
科学领域:
- 材料科学
- 晶体学
- 光子材料
背景情况:
- 协调聚合物和金属有机框架 (MOF) 为光子应用提供可调节的特性.
- 设计非线性光学 (NLO) MOF 需要了解结构-属性关系,特别是色谱排列.
- 双光子吸收 (TPA) 是一个关键的NLO现象,在光学限制和生物成像中具有应用.
研究的目的:
- 研究两个新的MOF的TPA诱导的光发光.
- 建立在MOF的TPA效率的结构-属性关系.
- 提供基于染色体方向的高效TPA材料的设计原则.
主要方法:
- 使用供体-接受体四乙烯二胺 (tPPD) 染色体连接器 (H4TPBD) 和 Zn(II) /Cd(II) 金属中心合成两个新的MOF.
- MOF结构的特征,包括网络拓,相互透和封装密度.
- 测量和分析TPA诱导的光发效率.
主要成果:
- 发现TPA的效率取决于网络拓,相互透,包装密度和染色体空间排列.
- tPPD染色体的特定方向显著影响了观察到的NLO特性.
- 通过分子晶体的兴奋状态理论来合理化结果.
结论:
- 染色体定向是决定晶体网络化合物的非线性光学特性的一个关键因素.
- 该研究为具有增强TPA特性的MOF的合理设计提供了框架.
- 通过在MOF中控制染色体排列,可以建立高效的TPA材料的定量设计原则.
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