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Nonconjugated Polyurethane Derivatives with Aggregation-Induced Luminochromism for Multicolor and White Photoluminescent Films

Jiang, Nan; Meng, Ya-Jie; Zhu, Chang-Yi; Li, Ke-Xin; Li, Xin; Xu, Yan-Hong; Xu, Jia-Wei; Bryce, Martin R.

Nonconjugated Polyurethane Derivatives with Aggregation-Induced Luminochromism for Multicolor and White Photoluminescent Films Thumbnail


Authors

Nan Jiang

Ya-Jie Meng

Chang-Yi Zhu

Ke-Xin Li

Xin Li

Yan-Hong Xu

Jia-Wei Xu



Abstract

A simple and effective strategy to obtain solid-state multicolor emitting materials is a particularly attractive topic. Nonconventional/nonconjugated polymers are receiving widespread attention because of their advantages of rich structural diversity, low cost, and good processability. However, it is difficult to control the molecular conformation or to obtain the crystal structure of amorphous molecules, which means it is a challenge to obtain nontraditional polymeric materials with multicolor emission. In this work, a polyurethane derivative (PUH) with red-shifted emission was synthesized by a simple one-pot polymerization reaction. By exploiting the aggregation-induced luminochromism of PUH, a series of plastic films with tunable emission from blue to orange, and white-light emission, was obtained by doping different amounts of PUH into poly(methyl methacrylate) (PMMA), thereby changing the aggregation degree of PUH. This work demonstrates the excellent promise of polyurethane derivatives for the simple fabrication of large-scale flexible luminescent films.

Citation

Jiang, N., Meng, Y.-J., Zhu, C.-Y., Li, K.-X., Li, X., Xu, Y.-H., Xu, J.-W., & Bryce, M. R. (2024). Nonconjugated Polyurethane Derivatives with Aggregation-Induced Luminochromism for Multicolor and White Photoluminescent Films. ACS Macro Letters, 13(10), 1226-1232. https://doi.org/10.1021/acsmacrolett.4c00534

Journal Article Type Article
Acceptance Date Sep 4, 2024
Online Publication Date Sep 9, 2024
Publication Date Oct 15, 2024
Deposit Date Sep 13, 2024
Publicly Available Date Sep 13, 2024
Journal ACS Macro Letters
Electronic ISSN 2161-1653
Publisher American Chemical Society
Peer Reviewed Peer Reviewed
Volume 13
Issue 10
Pages 1226-1232
DOI https://doi.org/10.1021/acsmacrolett.4c00534
Public URL https://durham-repository.worktribe.com/output/2863271

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