Scalable Solvent-Free Synthesis of a Linear Heteroaromatic Trimer with Crystallization-Induced Phosphorescence
Article 2025 en
Authors
PM
Peng Meng
FG
Feng Gao
BW
Bo Wu
Abstract
1 min read
The polymerization mechanism and the identification of key oligomer intermediates during the thermal condensation of benzoguanamine (BG) remain unclear. Herein, we report a novel mixed thermal condensation strategy using BG and a pre-synthesized dimer to selectively synthesize the trimer (BG)<sub>3</sub> with a significantly enhanced yield. Comprehensive characterization techniques confirm the formation of a linear molecular structure for (BG)<sub>3</sub>. Notably, (BG)<sub>3</sub> exhibits a high molar absorption coefficient, approximately double the dimer and 4-fold greater than the monomer. Notably, (BG)<sub>3</sub> demonstrates crystallization-induced phosphorescence (CIP) with a lifetime of 514.9 μs in the crystalline state at room temperature.
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