Ma Zihan, Zhao Longhao, Xie Chunhua, Wang Xianjian, He Ziyuan, Chen Xuegang
Key Laboratory of Rubber-Plastic of Ministry of Education (QUST), School of Polymer Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
Polymers (Basel). 2024 May 28;16(11):1519. doi: 10.3390/polym16111519.
A series of stimuli-responsive fluorescent hydrogels were successfully synthesized via micelle radical copolymerization of hydrophilic acrylamide (AM), hydrophobic chromophore terpyridine-based monomer (TPY), and -isopropylacrylamide (NIPAM). These hydrogels presented blue emissions (423-440 nm) under room temperature, which is caused by the π-π* transition of the conjugated structures. Once the ambient temperature was increased to 55 °C, the fluorescence color changed from blue (430 nm) to pink (575 nm) within 10 min, subsequently to yellow (535 nm), and eventually back to pink. The thermal-responsive properties are attributed to the transition of the TPY units from unimer to dimer aggregation via the intermolecular charge transfer complex at high temperatures. The hydrogels showed pH-responsive properties. The emission peak of the hydrogel exhibited a blue shift of ~54 nm from neuter conditions to acidic conditions, while a 6 nm red shift to an alkaline environment was observed. The hydrogels demonstrated an obvious change in fluorescence intensity and wavelength upon adding different metal ions, which is caused by the coordination between the terpyridine units incorporated on the backbones and the metal ions. As a consequence, the hydrogels presented a sharp quenching fluorescence interaction with Fe, Fe, Cu, Hg, Ni, and Co, while it exhibited an enhanced fluorescence intensity interaction with Sn, Cd, and Zn. The microstructural, mechanical, and rheological properties of these luminescent hydrogels have been systematically investigated.
通过亲水性丙烯酰胺(AM)、疏水性发色团三联吡啶基单体(TPY)和N-异丙基丙烯酰胺(NIPAM)的胶束自由基共聚,成功合成了一系列刺激响应性荧光水凝胶。这些水凝胶在室温下呈现蓝色发射(423 - 440 nm),这是由共轭结构的π-π*跃迁引起的。一旦环境温度升至55℃,荧光颜色在10分钟内从蓝色(430 nm)变为粉红色(575 nm),随后变为黄色(535 nm),最终又变回粉红色。热响应特性归因于高温下TPY单元通过分子间电荷转移络合物从单体转变为二聚体聚集。这些水凝胶表现出pH响应特性。水凝胶的发射峰从中性条件到酸性条件呈现约54 nm的蓝移,而在碱性环境中观察到6 nm的红移。加入不同金属离子后,水凝胶的荧光强度和波长发生明显变化,这是由主链上引入的三联吡啶单元与金属离子之间的配位作用引起的。因此,水凝胶与Fe、Fe、Cu、Hg、Ni和Co呈现出强烈的荧光猝灭相互作用,而与Sn、Cd和Zn则表现出增强的荧光强度相互作用。对这些发光水凝胶的微观结构、力学和流变学性质进行了系统研究。