Zhou Qing, Wang Jun, Zhang Yuanchao, Yang Lei
Engineering Research Center for Eco-Dyeing and Finishing of Textiles, Key Laboratory of Advanced Textile Materials and Manufacturing Technology, Ministry of Education, College of Textile Science and Engineering (International Institute of Silk), Zhejiang Sci-Tech University, Hangzhou, 310018, China.
Zhejiang Sci-Tech University Shaoxing-Keqiao Research Institute, Building 8, Cross border E-commerce Park, Huashe Street, Keqiao District, Shaoxing City, Zhejiang, 312030, China.
Macromol Rapid Commun. 2025 Jan;46(2):e2400657. doi: 10.1002/marc.202400657. Epub 2024 Oct 18.
To enhance the photoluminescence (PL) of unconventional luminescent compounds, particularly their persistent room temperature phosphorescence (p-RTP) performance, compressing the powder into tablets has been demonstrated as a viable approach. Nevertheless, the alterations in the emission capability of PL in compacted tablets have not been comprehensively investigated. In this study, four polyacrylamide (PAM) with controllable molecular weight (MW) are fabricated from powder to tablets, and their PL emission properties are thoroughly examined and compared with corresponding powders to elucidate the emission mechanism. As MW increases, both PL and p-RTP emissions of the tablets gradually intensify, exhibiting significant enhancement compared to the corresponding powder while retaining the characteristic blue shift. Through small angle X-ray scattering (SAXS), construction of molecular models for tablets, detailed analysis of molecular interactions, and theoretical calculations are conducted to reasonably explain these emission phenomena using clustering-triggered emission (CTE) and average packing density promoted emission (PDE) mechanisms. These findings not only advance the understanding of nonconventional luminogens' emission mechanisms but also offer new insights for preparing nonconventional luminescent polymers with controllable p-RTP emission performance.
为了增强非常规发光化合物的光致发光(PL)性能,特别是其室温磷光(p-RTP)性能,将粉末压制成片剂已被证明是一种可行的方法。然而,压实片剂中PL发射能力的变化尚未得到全面研究。在本研究中,将四种分子量(MW)可控的聚丙烯酰胺(PAM)由粉末制成片剂,并对其PL发射特性进行了全面研究,并与相应的粉末进行比较,以阐明发射机制。随着分子量的增加,片剂的PL和p-RTP发射均逐渐增强,与相应的粉末相比有显著增强,同时保持特征性蓝移。通过小角X射线散射(SAXS)、构建片剂分子模型、详细分析分子间相互作用以及进行理论计算,利用聚集诱导发光(CTE)和平均堆积密度促进发光(PDE)机制合理解释了这些发射现象。这些发现不仅推进了对非常规发光体发射机制的理解,也为制备具有可控p-RTP发射性能的非常规发光聚合物提供了新的见解。