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Upconversion luminescence enhancement in plasmonic architecture with random assembly of metal nanodomes

机译:在电浆上转换发光增强体系结构与随机组装的金属

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We report an experimental study on the highly enhanced upconversion luminescence (UCL) of beta-NaYF4: Yb3+/Er3+ nanocrystals (NCs) in a plasmonic architecture. For the architecture, we designed a thin film device composed of a thin layer of NCs capped with an upper layer of a plasmonic nanodome array (pNDA) and lower substrate of a back reflector (BR). Compared to the UCL intensity observed in a glass reference substrate, the designed plasmonic architecture exhibits distinctively strong luminescence enhanced by up to 800-fold. The intensity considerably exceeds the previously reported luminescence intensity regardless of the excitation power. We elucidated a mechanism explaining the large UCL enhancement, which quantitatively analyzes the combination of plasmonic effects as well as multiple large scattering. More importantly, we provided a detailed analysis of the Ag NDA-derived and BR-assisted plasmonic effects that contribute to an increase in the radiative decay rate and an enhancement of the absorption of incident light. The present study is expected to be beneficial for designing a thin film-based plasmonic structure with a randomized metal nanostructure for high-efficiency photovoltaic devices and infrared detectors.
机译:我们报告一个实验研究的高度提高上转换发光(UCL)beta-NaYF4: Yb3 + / Er3 +纳米晶体(nc)电浆体系结构。设计了一种薄膜设备组成的薄层的上层的nc封顶电浆nanodome数组(pNDA)和低衬底的背反射器(BR)。伦敦大学学院的强度观察玻璃的参考衬底,电浆体系结构设计展示独特的强烈发光增强了800倍。大大超过了之前报道发光强度无关激励的力量。解释了大伦敦增强,定量分析的结合电浆效果以及多个大散射。Ag) NDA-derived和详细的分析BR-assisted电浆造成影响增加辐射衰变速率和一个增强入射光的吸收。目前的研究将是有益的设计一层薄薄的薄膜电浆结构随机金属奈米结构为高效光伏设备红外探测器。

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