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Synthesis of some erbium(Ⅲ) chelates and characterization of their NIR emission properties for use in organic near infrared optical amplification waveguides

机译:某些((Ⅲ)螯合物的合成及其近红外发射特性的表征,用于有机近红外光放大波导

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Recent years have seen considerable interest in the possibility of using rare earth chelates as emissive materials in organic media. Lanthanides luminescence is quite interesting in applications requiring high spectral purity (for example in OLEDs), or infra red luminescence, in active optical waveguides for telecommunications. The use of organic optical amplification modules is attractive for their ease of fabrication, and therefore their potential low cost, but the high losses at NIR wavelength and the limitation of the emission lifetime due to the quenching effect of the organic matrix greatly limits their performances. However, rare earth chelates offer the possibility to reduce by several orders of magnitude the pump power needed for population inversion, using the absorption of the organic ligand followed by an energy transfer to the rare earth ion. By choosing a ligand with a high molecular absorption, it should then be possible to balance the short emission lifetime and hence-to obtain optical amplification. We report on the synthesis and characterisation of the optical near infrared properties of an erbium phthalocyanine. The complex shows very high absorption in the 670nm region, is highly soluble and shows minimum concentration quenching effect. The red absorption could allow the use of standard laser diode as pump source in a planar polymer amplifier device.
机译:近年来,人们对在有机介质中使用稀土螯合物作为发光材料的可能性产生了极大的兴趣。在要求高光谱纯度的应用中(例如在OLED中)或在用于电信的有源光波导中的红外发光中,镧系元素的发光非常有趣。有机光放大模块的使用因其易于制造,因此潜在的低成本而吸引人,但是由于有机基体的猝灭效应,NIR波长下的高损耗和发射寿命的限制极大地限制了它们的性能。但是,稀土螯合物可以利用有机配体的吸收,然后将能量转移到稀土离子,从而将种群反转所需的泵浦功率降低几个数量级。通过选择具有高分子吸收的配体,那么应该有可能平衡短发射寿命并因此获得光放大。我们报告了and酞菁的光学近红外特性的合成和表征。该络合物在670nm区域显示出非常高的吸收率,具有很高的溶解性,并且显示出最小的浓度猝灭作用。红色吸收可以允许使用标准的激光二极管作为平面聚合物放大器设备中的泵浦源。

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