| Literature DB >> 33169482 |
Yueying Lai1, Tianwen Zhu1, Ting Geng2, Shuyuan Zheng1, Tianjia Yang1, Zihao Zhao1, Guanjun Xiao2, Bo Zou2, Wang Zhang Yuan1.
Abstract
The rational modulation of the nontraditional intrinsic luminescence (NTIL) of nonconventional luminophores remains difficult, on account of the limited understanding on the structure-property relationships and emission mechanisms. Herein, the effective modulation of NTIL is demonstrated based on a group of nonaromatic anhydrides and imides. Mutual bridging of isolated subgroups effectively promotes intramolecular through-space conjugation (TSC), leading to red-shifted emission, enhanced efficiency, and prolonged persistent room-temperature phosphorescence (p-RTP). The substitution of heteroatoms from oxygen to nitrogen drastically changes the TSC and enhances intermolecular interactions, resulting in enhanced emission efficiency. In addition, upon freezing, compression, or embedding into polymer matrices, the emission intensity and color remain well regulated. These results shed new light on the rational modulation of the NTIL and p-RTP of nonconventional luminophores.Entities:
Keywords: clustering-triggered emission; nonconventional luminophores; nontraditional intrinsic luminescence; persistent room temperature phosphorescence; through-space conjugation
Year: 2020 PMID: 33169482 DOI: 10.1002/smll.202005035
Source DB: PubMed Journal: Small ISSN: 1613-6810 Impact factor: 13.281