发光
自愈水凝胶
氢键
化学
羧甲基纤维素
材料科学
镧系元素
分子
光化学
配体(生物化学)
配位复合体
高分子化学
化学工程
纤维素
PEG比率
作者
Yakun Zhang (8587455),Xuelei Wang (469810),Hao Li (31608),Daqing Yang (1682245)
出处
期刊:
[Figshare (United Kingdom)]
日期:2025-10-20
标识
DOI:10.1021/acssuschemeng.5c09189.s001
摘要
As a well-known biodegradable and renewable polymer, cellulose has recently gained significant attention in the development of luminescent material, while it still remains a significant challenge to achieve multifunctional luminescent hydrogels. Here we report the construction of stimuli-responsive luminescent hydrogels through the synergistic combination of metal–ligand coordination interactions of lanthanide (Ln3+) complexes and hydrogen bonding between carboxymethyl cellulose (CMC), poly(ethylene glycol) (PEG), and pyridine-2,6-dicarboxylic acid (DPA) molecules. This molecular anchoring strategy based on the hydrogen-bonding interactions effectively suppresses the aggregation of DPA molecules and enhances the stability of Ln3+-DPA complexes in hydrogels through synergistic Ln3+-DPA coordination bond interactions, resulting in luminescent hydrogels possessing excellent luminescence performance. The dynamic double-network structure formed between CMC and PEG through hydrogen bonding interactions confers enhanced mechanical property and self-healing ability to the luminescent hydrogels. Based on changes in the luminescence brightness and emission intensity, the luminescent hydrogels can act as smart sensor for the naked-eye detection of l-ascorbic acid with good reversibility and selectivity. Furthermore, the reversible luminescence behavior of the luminescent hydrogels could be manipulated by the successive addition of l-ascorbic acid and arginine. This work may provide an interesting perspective for the design of luminescent hydrogels integrated with Ln3+ complexes and CMC-based networks.
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