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非常规全彩发光聚氨酯:分子轨道水平的发光机制

Nonconventional Full-Color Luminescent Polyurethanes: Luminescence Mechanism at the Molecular Orbital Level.

作者信息

Jiang Nan, Meng Ya-Jie, Pu Xin, Zhu Chang-Yi, Tan Shu-Han, Xu Yan-Hong, Zhu You-Liang, Xu Jia-Wei, Bryce Martin R

机构信息

Key Laboratory of Preparation and Applications of Environmental Friendly Materials, Key Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education, Jilin Normal University, Changchun, 130103, China.

Ministry-of-Education Key Laboratory of Numerical Simulation of Large-Scale Complex System (NSLSCS) and School of Chemistry and Materials Science, Nanjing Normal University, Nanjing 210023, China.

出版信息

ACS Mater Lett. 2024 Nov 21;7(1):24-31. doi: 10.1021/acsmaterialslett.4c02100. eCollection 2025 Jan 6.

Abstract

The study of structure-activity relationships is a top priority in the development of nontraditional luminescent materials. In this work, nonconjugated polyurethanes (PUs) with full-color emission (red, green, and blue) are easily obtained by control of the diol monomer structure and the polymerization conditions. Selected diol monomers introduced single, double, or triple bond repeating units into the main chain of the PUs, in order to understand how unsaturated bonds and H-bonds affect their luminescence from a molecular orbital viewpoint. Detailed experimental and theoretical results show that the PUs have different temperature-dependent behaviors related to the interplay of H-bonding, through-space n-π interactions, and aggregation properties. The potential applications of PUs in colorful displays, covert information transmission, and multifunctional bioimaging have been verified. This work provides a new general protocol for the simple preparation of multifunctional nonconventional fluorescent polymers and deepens the understanding of their luminescence mechanisms.

摘要

结构-活性关系的研究是新型发光材料开发中的首要任务。在这项工作中,通过控制二醇单体结构和聚合条件,可轻松获得具有全色发射(红色、绿色和蓝色)的非共轭聚氨酯(PU)。所选二醇单体将单键、双键或三键重复单元引入到PU的主链中,以便从分子轨道角度了解不饱和键和氢键如何影响其发光。详细的实验和理论结果表明,PU具有与氢键、空间n-π相互作用和聚集性质的相互作用相关的不同温度依赖性行为。PU在彩色显示、隐蔽信息传输和多功能生物成像中的潜在应用已得到验证。这项工作为简单制备多功能非传统荧光聚合物提供了一种新的通用方案,并加深了对其发光机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21b4/11707742/4d9b95a65f80/tz4c02100_0001.jpg

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