在2,7-di(4-phenylethynyl) pyrene-bridged bis(alkenylruthenium) 复合体中的烯光
Franciska S Gogesch1, Lea Bauer1, Florian D Vollstädt1
1Fachbereich Chemie, Universität Konstanz, Universitätsstraße 10, 78457 Konstanz, Germany. rainer.winter@uni-konstanz.de.
Dalton transactions (Cambridge, England : 2003)
|December 1, 2023
概括
这些复合体没有通过烯链接器显示它们的金属中心之间的电子通信,导致稳定,红移的光辐射. 这种缺乏合的情况保护了烯核的核心.
科学领域:
- 协调化学 协调化学
- 光物理学的光学物理学
- 材料科学 材料科学 材料科学
背景情况:
- 带有扩展的π-结合链接器的鲁复合体因其电子和光物理性质而被探索.
- 了解多核金属复合体中的电子合对于设计先进的功能材料至关重要.
研究的目的:
- 为了研究由 π 延长的烯链接器桥接的中心之间的电子通信.
- 描述这些新型复合物的光物理行为,特别是光.
主要方法:
- 合成PyrDPE-RuCl和PyrDPE-Ruacac复合体,其中包括一个2,7-di(4-phenylethynyl) pyrene链接器.
- 电化学研究以确定氧化行为和电子合.
- 光谱分析 (UV-Vis吸收,光) 以探测77K的电子转换和发射特性.
主要成果:
- 复合体同时经历它们的{Ru}-styryl实体的单电子氧化.
- 缺少间隔电荷转移 (IVCT) 频段表明{Ru}中心之间缺乏电子合.
- 旋转密度仅限于终端 styryl ruthenium 位点.
- 烯光保持稳定和红移,显示电子脱从{Ru}-styryl终点.
结论:
- 中央的烯基化物从电子上脱离了{Ru}-烯末端.
- 研究的复合物表现出稳定的以烯为基础的光,不受金属中心氧化的影响.
- 这种电子解为在需要从连接器单元获得稳定的发光的应用中使用这些复合体开辟了可能性.
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