Xie Zongliang, Xue Yufeng, Zhang Xianhe, Chen Junru, Lin Zesen, Liu Bin
Institute for Functional Intelligent Materials, National University of Singapore, Singapore, Singapore.
Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore, Singapore.
Nat Commun. 2024 Apr 30;15(1):3668. doi: 10.1038/s41467-024-47962-6.
Mechanoluminescence, featuring light emission triggered by mechanical stimuli, holds immense promise for diverse applications. However, most organic Mechanoluminescence materials suffer from short-lived luminescence, limiting their practical applications. Herein, we report isostructural doping as a valuable strategy to address this challenge. By strategically modifying the host matrices with specific functional groups and simultaneously engineering guest molecules with structurally analogous features for isostructural doping, we have successfully achieved diverse multicolor and high-efficiency persistent mechanoluminescence materials with ultralong lifetimes. The underlying persistent mechanoluminescence mechanism and the universality of the isostructural doping strategy are also clearly elucidated and verified. Moreover, stress sensing devices are fabricated to show their promising prospects in high-resolution optical storage, pressure-sensitive displays, and stress monitoring. This work may facilitate the development of highly efficient organic persistent mechanoluminescence materials, expanding the horizons of next-generation smart luminescent technologies.
机械发光,即由机械刺激引发的光发射,在各种应用中具有巨大潜力。然而,大多数有机机械发光材料存在发光寿命短的问题,限制了它们的实际应用。在此,我们报道了同构掺杂作为应对这一挑战的一种有价值的策略。通过用特定官能团对主体基质进行策略性修饰,并同时设计具有结构类似特征的客体分子用于同构掺杂,我们成功制备出了具有超长寿命的多种多色且高效的持久机械发光材料。潜在的持久机械发光机制以及同构掺杂策略的通用性也得到了清晰的阐明和验证。此外,制造了应力传感装置,以展示它们在高分辨率光学存储、压敏显示器和应力监测方面的广阔前景。这项工作可能会推动高效有机持久机械发光材料的发展,拓展下一代智能发光技术的视野。