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Photoluminescence and energy transfer investigation from SiO2: Tb, Au inverse opals to rhodamine-B dyes

机译:SiO2:Tb,Au反蛋白石到若丹明-B染料的光致发光和能量转移研究

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Energy transfer has attracted extensive attention due to its widespread applications in medical diagnostics, DNA analysis and lighting devices. There are few reports on the energy transfer from rare earth ions to dyes. In the present work, the SiO2:Tb inverse opals with and without Au nanoparticles were prepared, and the organic rhodamine-B (RhB) dyes were filled into the voids of SiO2:Tb inverse opals. Non -radiative and radiative energy transfer processes from the SiO2:Tb inverse opals to the RhB were observed. The influence of Au nanoparticles and photonic band gap on the energy transfer from SiO2:Tb inverse opals to the RhB was investigated. The Au nanoparticles enhanced energy transfer was observed due to the surface plasmon resonance effects of the Au nanoparticles. When the emission peaks from the SiO2:Tb inverse opal is overlapped with the photonic band gap, the emission suppression of the SiO2:Tb inverse opal as well the emission enhancement of the RhB dyes were obtained, which is attributed to improved energy transfer caused by the photonic band gap. The steady state rate equations were used to explain enhancement of energy transfer caused by the photonic band gap. (C) 2016 Elsevier B.V. All rights reserved.
机译:能量转移由于其在医学诊断,DNA分析和照明设备中的广泛应用而受到广泛关注。关于从稀土离子到染料的能量转移的报道很少。在目前的工作中,制备具有和不具有Au纳米颗粒的SiO 2:Tb反蛋白石,并且将有机若丹明-B(RhB)染料填充到SiO 2:Tb反蛋白石的空隙中。观察到从SiO2:Tb反蛋白石到RhB的非辐射和辐射能量转移过程。研究了金纳米颗粒和光子带隙对SiO2:Tb反蛋白石向RhB能量转移的影响。由于金纳米颗粒的表面等离子体共振效应,观察到金纳米颗粒增强了能量转移。当SiO2:Tb反蛋白石的发射峰与光子带隙重叠时,SiO2:Tb反蛋白石的发射抑制以及RhB染料的发射增强,这归因于由光子带隙。稳态速率方程用于解释由光子带隙引起的能量转移的增强。 (C)2016 Elsevier B.V.保留所有权利。

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