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首页> 外文期刊>RSC Advances >The sequential structure of tripyridiniumylporphyrin pendants in water-soluble copolymers and their association behaviour with tetrasulfonatophenylporphyrin guests: UV-vis absorption and fluorescence emission spectra study
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The sequential structure of tripyridiniumylporphyrin pendants in water-soluble copolymers and their association behaviour with tetrasulfonatophenylporphyrin guests: UV-vis absorption and fluorescence emission spectra study

机译:水溶性共聚物中的三吡啶基卟啉侧基的顺序结构及其与四磺基苯基卟啉客体的缔合行为:紫外可见吸收和荧光发射光谱研究

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A novel cationic tripyridiniumylporphyrin monomer, 5-[4-[2-(acryloyloxy)ethoxy]phenyl]-l0,l5,20-tris( N -methyl-4-pyridiniumyl)porphyrinate zinc( II ) (ZnTrMPyP), was synthesized, and its self-aggregation in water was studied by UV-vis absorption. The monomer was copolymerized with acrylamide in water and DMSO, respectively, to prepare the water-soluble polymers P-W and P-D. The aggregation behaviour of the copolymers in aqueous solution was investigated by UV-vis absorption and fluorescence emission spectra. The polymer P-D displayed very similar absorption and emission spectra to those of ZnTrMPyP in water, indicating that the polymer chains in P-D have no significant effect on the aggregate structure of ZnTrMPyP in aqueous media. In comparison, two new absorption bands appeared in the Q band range of polymer P-W and its fluorescence spectra red shifted and the fluorescence quantum yield decreased obviously. These characteristics remained unchanged even in a good solvent for the monomer, suggesting that a new aggregation structure for the porphyrin pendants fixed by the covalent bond was formed. According to the different dispersed states of the porphyrin monomer in water and DMSO, the porphyrin pendants should distribute randomly in the P-D polymer chains while having micro-blocky sequences in polymer P-W. The association behaviour between the copolymers and tetra( p -sulfonatophenyl)porphyrin, TSPP, bearing opposite charged substituents were studied by absorption and emission Spectra and further analyzed by the Benesi–Hildebrand and the Stern–Volmer methods. The results showed that relatively discrete porphyrin pendants in P-D formed a 1?:?1 stoichiometric complex with TSPP and both static and dynamic mechanisms were active in this quenching process, while the tightly associated porphyrin pendants in P-W interacted with TSPP as an entirety and static quenching was dominant in this process. This observation was in accordance with their sequential structure. The polymer P-W has a wider absorption range and higher absorption intensity in the long wavelength region than the porphyrin monomer, which can more efficiently absorb light to accomplish light harvesting in water.
机译:合成了新型阳离子三吡啶鎓基卟啉单体5- [4- [2-(丙烯酰氧基)乙氧基]苯基] -1,15,20-三(N-甲基-4-吡啶基)卟啉锌(II)(ZnTrMPyP),并通过紫外可见吸收法研究了其在水中的自聚集。将单体分别与丙烯酰胺在水和DMSO中共聚,以制备水溶性聚合物P-W和P-D。通过紫外可见吸收和荧光发射光谱研究了共聚物在水溶液中的聚集行为。聚合物P-D在水中的吸收和发射光谱与ZnTrMPyP的吸收和发射光谱非常相似,表明P-D中的聚合物链对ZnTrMPyP在水性介质中的聚集结构没有显着影响。相比之下,在聚合物P-W的Q带范围内出现了两个新的吸收带,其荧光光谱发生红移,荧光量子产率明显下降。即使在单体的良好溶剂中,这些特性也保持不变,表明通过共价键固定的卟啉侧基形成了新的聚集结构。根据卟啉单体在水和DMSO中的不同分散状态,卟啉侧基应随机分布在P-D聚合物链中,同时在聚合物P-W中具有微嵌段序列。通过吸收和发射光谱研究了共聚物与带有相反电荷取代基的四(对-磺基苯基)卟啉TSPP之间的缔合行为,并通过贝内西-希尔德布兰德和斯特恩-沃尔默方法进行了进一步分析。结果表明,PD中相对分散的卟啉侧基与TSPP形成1 ::?1的化学计量配合物,并且在此淬灭过程中激活了静态和动态机制,而PW中紧密相关的卟啉侧基与TSPP整体和静态地相互作用。在此过程中,淬火占主导地位。该观察结果符合其顺序结构。与卟啉单体相比,聚合物P-W在长波长区域具有更宽的吸收范围和更高的吸收强度,可以更有效地吸收光以完成水中的光收集。

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