Chen Guilin, Feng Hui, Feng Feifei, Xu Pengfei, Xu Jing, Pan Saifei, Qian Zhaosheng
Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, College of Chemistry and Life Sciences , Zhejiang Normal University , Jinhua 321004 , People's Republic of China.
J Phys Chem Lett. 2018 Nov 1;9(21):6305-6311. doi: 10.1021/acs.jpclett.8b02742. Epub 2018 Oct 22.
Manipulation of photophysical properties of pure organic materials via simple alteration is attractive but extremely challenging because of the lack of valid design strategies for achieving ultralong afterglow or efficient room-temperature phosphorescence. Herein, we report a first photophysical manipulation of organic ionic crystals from ultralong afterglow to highly efficient phosphorescence by variation of halides in the crystals. Crystal structural analysis reveals ultralong organic afterglow of tetraphenylphosphonium chloride is promoted by strong intermolecular electronic coupling in the crystal, and theoretical analysis demonstrates that the tremendous boost of the phosphorescence of tetraphenylphosphonium iodide is caused by the coupling effects of significant heavy atom effect from iodine atoms and a small energy difference between the first singlet and triplet states. This work contributes to regulating long-lived emissive behaviors of pure organic ionic crystals in a controlled way and will promote the development of optical switches controlled by external stimuli.
通过简单改变来调控纯有机材料的光物理性质很有吸引力,但极具挑战性,因为缺乏实现超长余辉或高效室温磷光的有效设计策略。在此,我们报道了通过改变晶体中的卤化物,首次实现了有机离子晶体从超长余辉到高效磷光的光物理调控。晶体结构分析表明,氯化四苯基鏻的超长有机余辉是由晶体中强烈的分子间电子耦合促进的,理论分析表明,碘化四苯基鏻磷光的大幅增强是由碘原子显著的重原子效应和第一单线态与三线态之间的小能量差的耦合效应引起的。这项工作有助于以可控方式调节纯有机离子晶体的长寿命发光行为,并将推动由外部刺激控制的光开关的发展。