Xue Yufeng, Xie Zongliang, Yin Zheng, Xu Yincai, Liu Bin
Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore, Singapore.
Institute for Functional Intelligent Materials, National University of Singapore, Singapore, Singapore.
Nat Commun. 2025 May 15;16(1):4526. doi: 10.1038/s41467-025-59787-y.
Organic afterglow materials, known for their unique luminescent properties and diverse applications, have garnered significant attention in recent years. However, developing long-lasting, high-efficiency, full-color afterglow systems and exploring simple materials processing strategies for new applications are still challenging in this field. Herein, we rationally design a processable molecular glass and employ it as a host in a host-guest strategy to address these challenges. By strategically modifying the host via othyl-methylation, we successfully create a molecular glass and capture its temperature-dependent, processable viscous supercooled liquid state. High-efficiency full color from violet to near-infrared afterglow systems with ultralong lifetimes are developed by doping varied structural dopants. The underlying glass-forming and afterglow mechanisms are also clearly elucidated and verified. Moreover, the excellent glass-forming ability of the host and its viscous supercooled liquid enabled the glass system for large-area fabrication, shaping of objects with diverse 3D structures, and creation of flexible, meter-long afterglow fibers. This work offers significant potential for practical applications in advanced textiles, displays, and other fields.
有机余辉材料因其独特的发光特性和多样的应用而闻名,近年来受到了广泛关注。然而,在该领域开发持久、高效、全色余辉系统并探索用于新应用的简单材料加工策略仍然具有挑战性。在此,我们合理设计了一种可加工的分子玻璃,并将其用作主客体策略中的主体来应对这些挑战。通过对主体进行乙基甲基化的策略性修饰,我们成功制备出一种分子玻璃,并捕捉到其依赖温度的、可加工的粘性过冷液态。通过掺杂不同结构的掺杂剂,开发出了具有超长寿命的从紫色到近红外的高效全色余辉系统。同时,潜在的玻璃形成和余辉机制也得到了清晰的阐明和验证。此外,主体优异的玻璃形成能力及其粘性过冷液态使得该玻璃系统可用于大面积制造、具有各种三维结构的物体成型以及制备柔性、米长的余辉纤维。这项工作在先进纺织品、显示器和其他领域具有巨大的实际应用潜力。