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微结构光纤中的镧系元素上转换:用于传感的检测极限的提高和用于纳米晶体特性研究的新工具的演示。

Lanthanide upconversion within microstructured optical fibers: improved detection limits for sensing and the demonstration of a new tool for nanocrystal characterization.

机构信息

School of Chemistry & Physics and Institute of Photonics & Advanced Sensing, University of Adelaide, Adelaide, Australia.

出版信息

Nanoscale. 2012 Dec 7;4(23):7448-51. doi: 10.1039/c2nr32583g.

Abstract

We investigate a powerful new sensing platform based on the excitation of upconversion luminescence from NaYF(4):Yb/Er nanocrystals loaded in solution within a suspended-core microstructured optical fiber. We demonstrate a substantial improvement in the detection limit that can be achieved in a suspended-core fiber sensor for solution-based measurements using these nanocrystals as an alternative to more traditional fluorophores, with sensing of concentrations as low as 660 fM demonstrated compared with the 10 pM obtained using quantum dots. This nanocrystal loaded suspended core fiber platform also forms the basis for a novel and robust nanoscale spectrometry device capable of capturing power-dependent spectra over a large dynamic range from 10(3) W cm(-2) to 10(6) W cm(-2) using a laser diode. This serves as a useful tool to study the multiple energy levels of rare earth luminescent nano-materials, allowing the two sharp emission bands to be studied in detail over a large dynamic range of excitation powers. Thus, in addition to demonstrating a highly sensitive dip sensor, we have devised a powerful new approach for characterizing upconversion nanoparticles.

摘要

我们研究了一种基于上转换发光激发的强大新传感平台,该平台基于负载在悬浮芯微结构光纤内溶液中的 NaYF(4):Yb/Er 纳米晶体。我们证明了使用这些纳米晶体作为替代更传统荧光团进行基于溶液的测量的悬浮芯光纤传感器可以实现实质性的检测限改进,与使用量子点获得的 10 pM 相比,可以检测到低至 660 fM 的浓度。这种纳米晶体负载的悬浮芯光纤平台还为一种新型稳健的纳米级光谱仪设备奠定了基础,该设备能够使用激光二极管在 10(3) W cm(-2)至 10(6) W cm(-2)的大动态范围内捕获依赖于功率的光谱。这是研究稀土发光纳米材料多个能级的有用工具,允许在大的激发功率动态范围内详细研究两个尖锐的发射带。因此,除了展示高度灵敏的吸收传感器外,我们还设计了一种强大的新方法来表征上转换纳米粒子。

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