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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Preparation, characterization and luminescence properties of ternary europium complexes covalently bonded to titania and mesoporous SBA-15
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Preparation, characterization and luminescence properties of ternary europium complexes covalently bonded to titania and mesoporous SBA-15

机译:共价键合二氧化钛和中孔SBA-15的三价complex配合物的制备,表征和发光性质

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A novel multifunctional precursor H-MAB-S15 (MAB = meta-aminobenzoic acid) were prepared through the reaction of the carboxylic group with titanium alkoxide, and the amino group was modified with the coupling agent 3-(triethoxysilyl)-propyl isocyanate (TEPIC) and covalently bonded to mesoporous silica SBA-15. Then, novel organic-inorganic luminescent mesoporous hybrid titania materials, designated as Eu(Ti-MAB-S15)2(NTA)3, were obtained by introducing the Eu(NTA)3·2H2O (NTA = 1-(2-naphthoyl)-3,3,3-trifluoroacetonate) complex into the hybrid materials Ti-MAB-S15 via a ligand exchange reaction. FTIR, SAXRD, N2 absorption measurements, TEM, SEM, and photoluminescent spectra were characterized, and the results reveal that it has high surface area, is uniform in the mesostructure, and has good crystallinity. In addition, compared to the pure complex Eu (NTA)3·2H2O, the mesoporous hybrid titania material Eu(Ti-MAB-S15)2(NTA)3 exhibits longer luminescent lifetime and higher quantum efficiency, which indicates that the introduction of the multifunctional ligand T1-MAB-S15 can sensitize the luminescence emission of the Eu~(3+) ions. Moreover, the luminescent mesoporous hybrid titania materials containing terbium ions, designated as Tb(Ti-MAB-S15)2(NTA)3, were also prepared, and were found to emit green photoluminescence characteristic of terbium ions.
机译:通过羧基与钛醇盐的反应制备了新型多功能前体H-MAB-S15(MAB =偏氨基苯甲酸),并用偶联剂3-(三乙氧基甲硅烷基)-丙基异氰酸酯(TEPIC)修饰了氨基)并与中孔二氧化硅SBA-15共价键合。然后,通过引入Eu(NTA)3·2H2O(NTA = 1-(2-萘甲酰)),获得了新颖的有机-无机发光介孔杂二氧化钛材料,称为Eu(Ti-MAB-S15)2(NTA)3。 -3,3,3-三氟丙酮酸酯)通过配体交换反应复合成杂化材料Ti-MAB-S15。对FTIR,SAXRD,N2吸收测量,TEM,SEM和光致发光光谱进行了表征,结果表明它具有较高的表面积,均匀的介孔结构和良好的结晶度。此外,与纯配合物Eu(NTA)3·2H2O相比,介孔杂化二氧化钛材料Eu(Ti-MAB-S15)2(NTA)3的发光寿命更长,量子效率更高,这表明引入多功能配体T1-MAB-S15能敏化Eu〜(3+)离子的发光。此外,还制备了包含ter离子的发光中孔杂化二氧化钛材料,称为Tb(Ti-MAB-S15)2(NTA)3,并发现其发出green离子的绿色光致发光特性。

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