Tao Songyuan, Zhu Shoujun, Feng Tanglue, Zheng Chengyu, Yang Bai
State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, P. R. China.
Key Laboratory of Organ Regeneration and Transplantation of the Ministry of Education, The First Hospital of Jilin University, Changchun, 130061, P. R. China.
Angew Chem Int Ed Engl. 2020 Jun 15;59(25):9826-9840. doi: 10.1002/anie.201916591. Epub 2020 Apr 1.
The crosslink-enhanced emission effect was first proposed to explore the strong luminescence of nonconjugated polymer dots possessing only either non-emissive or weakly emissive sub-luminophores. Interesting phenomena in recent research indicate such enhancement caused by extensive crosslinking appears in diverse luminescent polymers with sub-luminophores (electron-rich heteroatomic moieties) or luminophores (conjugated π domains). This enhancement can promote the emission from nonluminous to luminous, from weakly luminous to strongly luminous, and even convert the pathway of radiative transitions. The concept of the crosslink-enhanced emission effect should be updated and extended to an in-depth spatial effect, such as electron overlap and energy splitting in confined domains by effective crosslinking, more than initial immobilization. This Minireview outlines the development of the crosslink-enhanced emission effect from the perspective of the detailed classification, inherent mechanism and applicable systems. An outlook on the further exploration and application of this theory are also proposed.
交联增强发射效应最初是为了探究仅具有非发光或弱发光子发光体的非共轭聚合物点的强发光而提出的。近期研究中的有趣现象表明,广泛交联引起的这种增强出现在具有子发光体(富电子杂原子部分)或发光体(共轭π域)的多种发光聚合物中。这种增强可以促进从非发光到发光、从弱发光到强发光的转变,甚至改变辐射跃迁的途径。交联增强发射效应的概念应更新并扩展到一种深入的空间效应,例如通过有效交联在受限域中的电子重叠和能量分裂,而不仅仅是最初的固定化。本综述从详细分类、内在机制和适用体系的角度概述了交联增强发射效应的发展。还对该理论的进一步探索和应用提出了展望。