Xu Wensheng, Bai Guoyi, Li Tingting, Gao Li, Yan Xilong, Li Yang, Chen Ligong, Wang Bowei
School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300350, P.R. China.
School of Chemistry and Chemical Engineering, Tianjin University of Technology, Tianjin, 300382, P.R. China.
Nat Commun. 2025 May 6;16(1):4189. doi: 10.1038/s41467-025-59360-7.
Organic room-temperature phosphorescent materials have developed rapidly. However, the phosphor emission enhancement of micro-nano materials achieved by electrostatic interaction were rarely reported. Herein, taking polystyrene microspheres (μPS) and urea-formaldehyde phosphorescent resin microspheres (μUF) as examples, a method was developed to enhance the phosphorescent performance of μUF by mixing with μPS. The opposite surface potential of μPS and μUF resulting in a significant electrostatic interaction. Moreover, the guest molecules in μUF were polarized under electrostatic interaction, which enhanced the binding to the matrix and further suppressed the non-radiative transition, so effectively improving phosphor emission. Furthermore, the electrostatic interaction of micro-nano composites demonstrated good universality in improving phosphorescence performance, as evidenced by incorporating of varying polymer microparticles into μUF or blending μPS with other phosphorescent microspheres. This work demonstrates the mechanism of electrostatic interaction enhancing phosphorescence emission within the micro-nano composites, which paves the way for the regulation of phosphorescent materials.
有机室温磷光材料发展迅速。然而,通过静电相互作用实现的微纳材料磷光发射增强却鲜有报道。在此,以聚苯乙烯微球(μPS)和脲醛磷光树脂微球(μUF)为例,开发了一种通过与μPS混合来增强μUF磷光性能的方法。μPS和μUF相反的表面电位导致显著的静电相互作用。此外,μUF中的客体分子在静电相互作用下被极化,增强了与基质的结合并进一步抑制了非辐射跃迁,从而有效提高了磷光发射。此外,微纳复合材料的静电相互作用在改善磷光性能方面表现出良好的通用性,将不同的聚合物微粒掺入μUF或将μPS与其他磷光微球共混即可证明。这项工作揭示了静电相互作用增强微纳复合材料内磷光发射的机制,为磷光材料的调控铺平了道路。