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用于柔性磷光聚合物凝胶光聚合的磷光体、引发剂和交联剂的多功能集成

Multi-Functional Integration of Phosphor, Initiator, and Crosslinker for the Photo-Polymerization of Flexible Phosphorescent Polymer Gels.

作者信息

Cao Yanyan, Wang Dan, Zhang Yongfeng, Li Gengchen, Gao Chong, Li Wei, Chen Xiaoting, Chen Xiaofei, Sun Peng, Dong Yuping, Cai Zhengxu, He Zhiyuan

机构信息

School of Materials Science and Engineering, Beijing Institute of Technology, Beijing, 100081, China.

Tangshan Research Institute, Beijing Institute of Technology, Beijing, 100081, China.

出版信息

Angew Chem Int Ed Engl. 2024 Apr 24;63(18):e202401331. doi: 10.1002/anie.202401331. Epub 2024 Mar 25.

Abstract

A general approach to constructing room temperature phosphorescence (RTP) materials involves the incorporation of a phosphorescent emitter into a rigid host or polymers with high glass transition temperature. However, these materials often suffer from poor processability and suboptimal mechanical properties, limiting their practical applications. In this work, we developed benzothiadiazole-based dialkene (BTD-HEA), a multifunctional phosphorescent emitter with a remarkable yield of intersystem crossing (Φ, 99.83 %). Its high triplet exciton generation ability and dialkene structure enable BTD-HEA to act as a photoinitiator and crosslinker, efficiently initiating the polymerization of various monomers within 120 seconds. A range of flexible phosphorescence gels, including hydrogels, organogels, ionogels, and aerogels were fabricated, which exhibit outstanding stretchability and recoverability. Furthermore, the unique fluorescent-phosphorescent colorimetric properties of the gels provide a more sensitive method for the visual determination of the polymerization process. Notably, the phosphorescent emission intensity of the hydrogel can be increased by the formation of ice, allowing for the precise detection of hydrogel freezing. The versatility of this emitter paves the way for fabricating various flexible phosphorescence gels with diverse morphologies using microfluidics, film-shearing, roll coating process, and two/three-dimensional printing, showcasing its potential applications in the fields of bioimaging and bioengineering.

摘要

构建室温磷光(RTP)材料的一般方法包括将磷光发射体掺入刚性主体或具有高玻璃化转变温度的聚合物中。然而,这些材料通常加工性能较差且机械性能欠佳,限制了它们的实际应用。在这项工作中,我们开发了基于苯并噻二唑的二烯烃(BTD-HEA),这是一种多功能磷光发射体,其系间窜越产率显著(Φ,99.83%)。其高三重态激子生成能力和二烯烃结构使BTD-HEA能够充当光引发剂和交联剂,在120秒内有效引发各种单体的聚合反应。制备了一系列柔性磷光凝胶,包括水凝胶、有机凝胶、离子凝胶和气凝胶,它们表现出出色的拉伸性和可恢复性。此外,凝胶独特的荧光-磷光比色特性为可视化测定聚合过程提供了一种更灵敏的方法。值得注意的是,水凝胶的磷光发射强度可因结冰而增强,从而实现对水凝胶冻结的精确检测。这种发射体的多功能性为使用微流体、薄膜剪切、辊涂工艺以及二维/三维打印制备各种形态各异的柔性磷光凝胶铺平了道路,展示了其在生物成像和生物工程领域的潜在应用。

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