尼罗红基高荧光聚合物颗粒AIEgen及其在光散射荧光膜中的应用。

Smart molecules : open access Pub Date : 2024-09-28 eCollection Date: 2025-03-01 DOI:10.1002/smo.20240032
Hongkun Jiang, Shengjie Chen, Weizhipeng Wu, Guan Wang, Xinggui Gu
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引用次数: 0

摘要

具有优异固态发光性能的有机发光团在照明、显示、传感、太阳能转换等各个领域都是迫切需要的。然而,如何实现它们的高效发光仍然是一个挑战。本文成功制备了一种新的尼罗红衍生物Nile- dpa - vb,该衍生物具有聚集诱导发射特性,光致发光量子产率(PLQY)为11.45%。通过沉淀聚合工艺对Nile-DPA-VB进行聚合时,PLQY可进一步提升至53.45%,而沉淀聚合过程中受限制的聚集微环境严重限制了Nile-DPA-VB的分子内运动。值得注意的是,Nile-DPA-VB对极性和空间效应超敏感,可以实时监测沉淀聚合的聚集微环境演变。在晶核和生长过程中,微相分离和动态硬化是实现高效发光的主要原因。最后,将所制备的荧光聚合物颗粒掺入聚甲基丙烯酸甲酯中,获得了具有高发光和高雾度的功能薄膜,在照明中显示出潜力。这些发现清楚地证明了聚合在构建高效固态发光材料中的重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nile red-based AIEgen for highly fluorescent polymer particles and its application in light-scattering fluorescent films.

Organic luminophores with superior solid-state luminescence are urgently required in various fields, such as lighting, display, sensing, and solar energy conversion. However, to achieve their highly efficient luminescence still remains a challenge. Herein, a newly designed Nile red derivative, Nile-DPA-VB, is successfully obtained to exhibit aggregation-induced emission characteristics with the photoluminescent quantum yield (PLQY) of 11.45%. Such PLQY could be further promoted to 53.45% when Nile-DPA-VB is polymerized undergoing precipitation polymerization process, where the confined aggregation microenvironment severely restricts the intramolecular motions of Nile-DPA-VB. Remarkably, Nile-DPA-VB is ultrasensitive to the polarity and steric effect, enabling the real-time monitoring of aggregation microenvironment evolution for precipitation polymerization. The microphase separation and dynamic hardening for the nucleation and growth processes are visually demonstrated, which contribute dominantly to the high-efficiency luminescence. Finally, by doping the as-prepared fluorescent polymeric particles into polymethyl methacrylate, functional films with high luminescence and high haze are achieved to show the potential in lighting. These findings clearly demonstrate the significant role of polymerization in constructing high-efficiency solid-state luminescent materials for practice.

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