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首页> 外文期刊>Journal of Polymer Research >Synthesis and characterization of two novel Schiff base type macromolecular ligands and preliminary research on luminescent property of polymer-rare earth complexes
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Synthesis and characterization of two novel Schiff base type macromolecular ligands and preliminary research on luminescent property of polymer-rare earth complexes

机译:两种新型Schiff基型大分子配体的合成与表征及聚合物稀土配合物发光性能的初步研究

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摘要

Luminescent polymer-rare earth complexes are a class of functional materials, and bonding-type polymer-rare earth complexes is one important kind of such material. In this work, by molecular design and through polymer reactions, two types of bidentate Schiff base groups, benzaldehyde/ortho-aminophenol (BAOA) type and benzaldehyde/glutamic acid (BAGL) type groups, were synchronously synthesized and bonded on the side chain of polysulfone (PSF), respectively, and two new Schiff base type macromolecular ligands, PSF-BAOA and PSF-BAGL, were obtained. Then through coordination reactions, the luminescent polymer-rare earth complexes with different chemical structures were prepared. The synthesis and characterization of PSFBAOA and PSF-BAGL were taken as the emphases of this study. The effects of main factors on the synthesis of the macromolecular ligands of PSF-BAOA and PSF-BAGL were fully researched, and their structures were fully characterized by FTIR and 1H-NMR. The luminescent properties of the prepared polymer-rare earth complexes were preliminarily discussed. The experimental results show that the Friedel-Crafts alkylation reaction of PSF with 4-(chloromethyl) benzaldehyde (CMBA) as the first step of the polymer reaction process can be smoothly carried out so that benzaldehyde (BA) as a group can be effectively bonded on the side chain of PSF, resulting in the modified polysulfone, PSF-BA. The appropriate solvent is N, N-dimethylacetamide (DMAC) with stronger polarity and suitable temperature is 70 degrees C. The subsequent Schiff reaction of PSF-BA with orthoaminophenol (OAP) or glutamic acid (GLA) as the second step of the polymer reaction process can be easily carried out, successfully getting two macromolecular ligands, PSF-BAOA and PSF-BAGL. The complex of PSF-BAOA and Eu(III) ion produces strong red luminescence, whereas the complex of PSF-BAGL and Tb(III) ion exhibits strong green emission.
机译:发光聚合物稀土配合物是一类功能材料,粘结式聚合物稀土配合物是一种重要的这种材料。在这项工作中,通过分子设计和通过聚合物反应,两种分类的二齿Schiff基团,苯甲醛/邻氨基苯酚(Baoa)型和苯甲醛/谷氨酸(BAGL)型基团同步地合成并粘合在侧链上分别获得多砜(PSF)和两种新的Schiff基型大分子配体,PSF-BaOA和PSF-BAGL。然后通过配位反应,制备具有不同化学结构的发光聚合物稀土配合物。 PSFBaOA和PSF-BAGL的合成和表征作为本研究的重点。完全研究了主要因素对PSF-BaOA和PSF-BAGL的高分子配体的合成的影响,其结构通过FTIR和1H-NMR完全表征。预先讨论制备的聚合物稀土配合物的发光性质。实验结果表明,作为聚合物反应过程的第一步骤的Friedel-Crafts烷基化反应与4-(氯甲基)苯甲醛(CMBA)可以平滑地进行,以便可以有效地粘合苯甲醛(BA)作为组在PSF的侧链上,导致改性的聚砜,PSF-BA。适当的溶剂是N,N-二甲基乙酰胺(DMAC),极性越强,合适的温度为70℃。PSF-BA与正氨基苯酚(OAP)或谷氨酸(GLA)作为聚合物反应的第二步的后续Schiff反应过程可以容易地进行,成功地获得两种大分子配体,PSF-BaOA和PSF-BAGL。 PSF-BaOA和EU(III)离子的复合物产生强烈的红色发光,而PSF-BAGL和TB(III)离子的复合物具有强大的绿色发射。

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