Han Yingdong, Zhang Xingxing, Huang Ling
College of Science, Civil Aviation University of China, Tianjin, 300300, China.
Institute of Environment and Sustainable Development, Civil Aviation University of China, Tianjin, 300300, China.
Chemistry. 2023 Dec 19;29(71):e202302633. doi: 10.1002/chem.202302633. Epub 2023 Oct 25.
Recent progress on the temporal response (TR) of lanthanide-doped upconversion luminescence (UCL) has enriched the means of UCL regulation, promoted advanced designs for customized applications such as biological diagnosis, high-capacity optical coding, and dynamic optical anti-counterfeiting, and pushed us to reacquaint the dynamic responses of sensitizer/activator ions in UCL systems. In particular, the lifetime of UCL should be revisited after discovery of novel experimental phenomena and luminescence mechanisms, i. e., it should be understood as the collective TR (in the decay edge) of all the involved ions rather than the reciprocal of the radiative rate of an individual ion. In this Concept, we retraced the latest understanding of the dynamics in UCL with special attention to the relationship between excitation and emission, means of TR regulation, and discussed existing challenges. It is expected to provide some fundamental insights to deepened understanding, further regulation, and frontier applications of TR features of UCL.
镧系掺杂上转换发光(UCL)的时间响应(TR)方面的最新进展丰富了UCL调控手段,推动了针对生物诊断、高容量光学编码和动态光学防伪等定制应用的先进设计,并促使我们重新认识UCL系统中敏化剂/激活剂离子的动态响应。特别是,在发现新的实验现象和发光机制后,应重新审视UCL的寿命,即应将其理解为所有相关离子的集体TR(在衰减边缘),而不是单个离子辐射速率的倒数。在本概念中,我们回顾了对UCL动力学的最新理解,特别关注激发与发射之间的关系、TR调控手段,并讨论了现有挑战。期望能为深入理解、进一步调控UCL的TR特性及前沿应用提供一些基本见解。