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Recent insights into upconverting nanoparticles: spectroscopy, modeling, and routes to improved luminescence

机译:最近的见解upconverting纳米粒子:改善光谱分析、建模和路线发光

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摘要

The development of reliable and reproducible synthetic routes that produce monodisperse lanthanide-doped upconverting nanoparticles has resulted in an appreciable need to determine the mechanisms which govern upconversion luminescence at the nanoscale. New experimental and theoretical evidence explicates the quenching phenomena involved in the low luminescence efficiencies. A deeper understanding of the role of surfaces and defects in the quenching mechanisms and the properties of upconverting nanoparticles are of fundamental importance to develop nanomaterials with enhanced luminescence properties. Herein, we summarize the most recent spectroscopic investigations, which have enabled the scientific community to ascertain that the predominant source of quenching involved in the luminescence of lanthanide-doped upconverting nanoparticles can be attributed to surface-defects. Modeling of these mechanisms in nanomaterials supports the experimental findings and yields further insights into the surface phenomena, providing a predictive tool to improve the luminescent efficiencies in nanomaterials.
机译:开发可靠的和可再生的生产单分散的合成路线lanthanide-doped upconverting纳米粒子有导致了一个明显的需要确定管理上转换发光机制在纳米尺度上。理论阐述了淬火的证据参与低的发光现象效率。的表面淬火和缺陷机制和upconverting的属性纳米粒子具有根本的重要性发展与增强荧光纳米材料属性。光谱调查,已启用科学界的确定淬火中涉及的主要来源发光的lanthanide-doped upconverting纳米颗粒可以归因于表面缺陷。纳米材料支持的实验结果和产量进一步洞察表面现象,提供改进的预测工具纳米材料的发光效率。

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