| Literature DB >> 30465423 |
Luonan Xu1, Xi Shen1, Zhixuan Zhou2, Tian He1, Jinjin Zhang1, Huayu Qiu1, Manik Lal Saha2, Shouchun Yin1,2, Peter J Stang2.
Abstract
Herein, we present a method for the preparation of supramolecular <span class="Chemical">polymers with tunable fluorescence via the combination of <span class="Chemical">metal-ligand coordination and phenanthrene-21-crown-7 (P21C7)-based host-guest interactions. A suite of rhomboidal metallacycles with different substituents were prepared via the coordination-driven self-assembly of a P21C7-based 60° diplatinum(II) acceptor and 120° dipyridyl donors. Upon variation of the substituents on the dipyridyl donors, the metallacycles exhibit emission wavelengths spanning the visible region (λmax = 427-593 nm). Metallacycle-cored supramolecular polymers were obtained via host-guest interactions between bis-ammonium salts and P21C7. The supramolecular polymers exhibit emission wavelengths similar to those of the individual metallacycles and higher fluorescent efficiency in solution and thin films. Utilizing a yellow-emitting supramolecular polymer thin film with high quantum yield (0.22), a white-light-emitting LED was fabricated by painting the thin film onto an ultraviolet LED. This study presents an efficient approach for tuning the properties of fluorescent supramolecular polymers and the potential of the metallacycle-cored supramolecular polymers as a platform for the fabrication of light-emitting materials with good processability and tunability.Entities:
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Year: 2018 PMID: 30465423 PMCID: PMC6469999 DOI: 10.1021/jacs.8b10842
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419