Lenora Chamika U, Hu Nai-Hsuan, Furgal Joseph C
Department of Chemistry and Center for Photochemical Sciences, Bowling Green State University, Bowling Green, Ohio 43403, United States.
ACS Omega. 2020 Dec 16;5(51):33017-33027. doi: 10.1021/acsomega.0c04366. eCollection 2020 Dec 29.
A 2,6-bis(2-benzimidazolyl) pyridine-linked silsesquioxane-based semi-branched polymer was synthesized, and its photophysical and metal-sensing properties have been investigated. The polymer is thermally stable up to 285 °C and emits blue in both solid and solution state. The emission of the polymer is sensitive to pH and is gradually decreased and quenched upon protonation of the linkers. The initial emission color is recoverable upon deprotonation with triethylamine. The polymer also shows unique spectroscopic properties in both absorption and emission upon long-term UV irradiation, with red-shifted absorption and emission not present in a simple blended system of phenylsilsesquioxane and linker, suggesting that a long-lived energy transfer or charge separated state is present. In addition, the polymer acts as a fluorescence shift sensor for Zn(II) ions, with red shifts observed from 464 to 528 nm, and reversible binding by the introduction of a competitive ligand such as tetrahydrofuran. The ion sensing mechanism can differentiate Zn(II) from Cd(II) by fluorescence color shifts, which is unique because they are in the same group of the periodic table and possess similar chemical properties. Finally, the polymer system embedded in a paper strip acts as a fluorescent chemosensor for Zn(II) ions in solution, showing its potential as a solid phase ion extractor.
合成了一种基于2,6-双(2-苯并咪唑基)吡啶连接的倍半硅氧烷的半支化聚合物,并对其光物理和金属传感性能进行了研究。该聚合物在高达285℃的温度下具有热稳定性,在固态和溶液态下均发射蓝色光。聚合物的发射对pH敏感,在连接基质子化时逐渐减弱并猝灭。用三乙胺去质子化后,初始发射颜色可恢复。该聚合物在长期紫外照射下的吸收和发射中也表现出独特的光谱性质,在苯基倍半硅氧烷和连接基的简单混合体系中不存在红移的吸收和发射,这表明存在长寿命的能量转移或电荷分离态。此外,该聚合物作为Zn(II)离子的荧光位移传感器,观察到从464到528 nm的红移,并通过引入竞争配体如四氢呋喃实现可逆结合。离子传感机制可以通过荧光颜色变化区分Zn(II)和Cd(II),这是独特的,因为它们在元素周期表的同一族中且具有相似的化学性质。最后,嵌入纸条中的聚合物体系作为溶液中Zn(II)离子的荧光化学传感器,显示出其作为固相离子萃取剂的潜力。