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Metal-enhanced upconversion luminescence tunable through metal nanoparticle-nanophosphor separation

机译:通过金属纳米粒子-纳米磷光体分离可调节的金属增强的上转换发光

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摘要

We have demonstrated amplification of luminescence in upconversion nanophosphors (UCNPs) of hexagonal phase NaYF_ 4 (β-NaYF_ 4) doped with the lanthanide dopants Yb~ (3+), Er~ (3+) or Yb~ (3+), Tm~ (3+) by close proximity to metal nanoparticles (NPs). We present a configuration in which close-packed monolayers of UCNPs are separated from a dense multilayer of metal NPs (Au or Ag) by a nanometer-scale oxide grown by atomic layer deposition. Luminescence enhancements were found to be dependent on the thickness of the oxide spacer layer and the type of metal NP with enhancements of up to 5.2-fold proximal to Au NPs and of up to 45-fold proximal to Ag NPs. Concomitant shortening of the UCNP luminescence decay time and rise time is indicative of the enhancement of the UCNP luminescence induced by resonant plasmonic coupling and nonresonant near-field enhancement from the metal NP layer, respectively.
机译:我们已经证明了掺杂镧系元素Yb〜(3 +),Er〜(3+)或Yb〜(3 +),Tm的六方相NaYF_4(β-NaYF_4)的上转换纳米磷光体(UCNP)中的发光放大。 〜(3+)紧邻金属纳米粒子(NPs)。我们提出了一种配置,其中紧密堆积的UCNPs单层通过原子层沉积生长的纳米级氧化物与金属NPs的致密多层(Au或Ag)分开。发现发光增强取决于氧化物间隔层的厚度和金属NP的类型,其中与Au NP最接近5.2倍的增强和与Ag NP最接近45倍的增强。 UCNP发光衰减时间和上升时间的同时缩短分别指示了金属NP层的共振等离子体耦合和非共振近场增强引起的UCNP发光增强。

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