首页> 外文期刊>Nanoscale Research Letters >Binary and Ternary Heterometallic (La 3+, Gd 3+, Y 3+)–Eu 3+ Functionalized SBA-15 Mesoporous Hybrids: Chemically Bonded Assembly and Photoluminescence
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Binary and Ternary Heterometallic (La 3+, Gd 3+, Y 3+)–Eu 3+ Functionalized SBA-15 Mesoporous Hybrids: Chemically Bonded Assembly and Photoluminescence

机译:二元和三元杂金属(La 3 + ,Gd 3 + ,Y 3 + )– Eu 3 + 功能化SBA-15中孔杂种:化学键合组装和光致发光

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A novel kind of organic–inorganic monomer SUASi has been achieved by modifying 5-sulfosalicylic acid (SUA) with 3-aminopropyltrimethoxysilane (APS), subsequently binary and ternary Eu_(3+)mesoporous hybrid materials with 5-sulfosalicylic acid (SUA)-functionalized SBA-15 and 1,10-phenanthroline (phen) are synthesized by co-condensation of SUASi and TEOS in the presence of Eu_(3+)complex and Pluronic P123 as a template. Finally, luminescent hybrid mesoporous materials consisting of active rare earth ions (Eu_(3+))—inert rare earth ions (Y_(3+), La_(3+), Gd_(3+)) complex covalently bonded to the mesoporous materials network have been obtained via this sol–gel approach. The physical characterization and photoluminescence of all these resulting materials are studied in detail. Especially the luminescent behavior has been studied with the different ratios of Eu_(3+)–(Y_(3+), La_(3+), Gd_(3+)), which suggests that the existence of inert rare earth ions can enhance the luminescence intensity of Eu_(3+). This may be due to the intramolecular energy transfer between Y_(3+), La_(3+), Gd_(3+), and Eu_(3+)through the covalently bonded mesoporous framework.
机译:通过用3-氨丙基三甲氧基硅烷(APS)修饰5-磺基水杨酸(SUA),然后用5-磺基水杨酸(SUA)-修饰的二元和三元Eu_(3+)介孔杂化材料,已经获得了一种新型的有机-无机单体SUASi。通过在Eu_(3+)配合物和Pluronic P123作为模板的情况下将SUASi和TEOS共缩合来合成功能化的SBA-15和1,10-菲咯啉(phen)。最后,发光杂化介孔材料由共价键合到介孔材料上的活性稀土离子(Eu_(3 +))-惰性稀土离子(Y_(3 +),La_(3 +),Gd_(3+))络合物组成通过这种溶胶-凝胶方法获得了网络。对所有这些所得材料的物理特性和光致发光进行了详细研究。特别是研究了不同比例的Eu_(3 +)–(Y_(3+),La_(3+),Gd_(3+))的发光行为,这表明惰性稀土离子的存在可以增强Eu_(3+)的发光强度。这可能是由于Y_(3 +),La_(3 +),Gd_(3+)和Eu_(3+)之间通过共价键合介孔骨架进行的分子内能量转移。

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