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Structural and Luminescence Properties of Silica-Based Hybrids Containing New Silylated-Diketonato Europium(III) Complex

机译:新型甲硅烷基化二酮ike(III)配合物的二氧化硅基杂化物的结构和发光性能

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摘要

A new betadiketonate ligand displaying a trimethoxysilyl group as grafting function and a diketone moiety as complexing site (TTA-Si = 4,4,4-trifluoro-2-(3-trimethoxysilyl)propyl)-1-3-butanedione (C4H3S)COCH[(CH2)(3)Si(OCH3)(3)]COCF3) and its highly luminescent europium(III) complex [Eu(TTA-Si)(3)] have been synthesized and fully characterized. Luminescent silica-based hybrids have been prepared as well with this new complex grafted on the surface of dense silica nanoparticles (28 +/- 3 nm) or on mesoporous silica particles. The covalent bonding of Eu(TTA-Si)(3) inside the core of uniform silica nanoparticles (40 +/- 5 nm) was also achieved. Luminescence properties are discussed in relation to the europium chemical environment involved in each of the three hybrids. The general methodology proposed allowed high grafting ratios and overcame chelate release and tendency to agglomeration, and it could be applied to any silica matrix (in the core or at the surface, nanosized or not, dense or mesoporous) and therefore numerous applications such as luminescent markers and luminophors could be foreseen.
机译:一种新的β-二酮酮酸酯配体,显示出作为接枝功能的三甲氧基甲硅烷基和作为络合部位的二酮部分(TTA-Si = 4,4,4-三氟-2-(3-三甲氧基甲硅烷基)丙基)-1-3-丁二酮(C4H3S)COCH [(CH2)(3)Si(OCH3)(3)] COCF3)及其高发光的((III)络合物[Eu(TTA-Si)(3)]已合成并充分表征。还已经制备了基于发光二氧化硅的杂化物,并将这种新的复合物接枝在致密的二氧化硅纳米颗粒(28 +/- 3 nm)的表面或介孔二氧化硅颗粒上。还实现了均匀二氧化硅纳米颗粒(40 +/- 5 nm)内核内部的Eu(TTA-Si)(3)共价键。讨论了三种杂化物各自涉及的chemical化学环境的发光特性。提出的通用方法允许较高的接枝率,克服了螯合物的释放和结块的趋势,并且可以应用于任何二氧化硅基质(在核中或在表面,纳米级或非纳米级,致密或中孔),因此可用于多种应用,例如发光可以预见标记和发光体。

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