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掺钕纳米颗粒的光谱学与热效应的对比研究

Comparative investigation of the optical spectroscopic and thermal effect in Nd-doped nanoparticles.

作者信息

Wang Shuai, Shen Bin, Wei Han-Lin, Liu Zixiao, Chen Zhigang, Zhang Yong, Su Yan, Zhang Jun-Zheng, Wang Haifang, Su Qianqian

机构信息

Institute of Nanochemistry and Nanobiology, Shanghai University, Shanghai 200444, China.

出版信息

Nanoscale. 2019 May 30;11(21):10220-10228. doi: 10.1039/c9nr02493j.

Abstract

Nd3+-doped nanoparticles involving 808 nm excitation hold great promise in various biomedical applications, such as bioimaging, biodetection, theranostics and optogenetics. Here we present the synthesis and characterization of core-multishell Nd3+-doped nanoparticles displaying excellent optical properties. We systematically studied the influence of doping concentration, nanostructure design, excitation wavelength and size effect on the upconversion luminescence of Nd3+-doped nanoparticles. Remarkably, the emission intensity of optimized nanoparticles with 808 nm excitation is three times higher than the emission intensity of those with 980 nm excitation. Surprisingly, the optical profiles of Nd3+-doped nanoparticles strongly depend on the excitation wavelengths. The dominant effect responsible for the emission intensity difference and the energy transfer mechanism upon different excitation wavelengths are investigated. Interestingly, the heavily Nd3+-doped nanoparticles not only display efficient upconversion luminescence, but also are able to convert the excitation source to heat under a single 808 nm excitation source. Importantly, these efforts will lead to Nd3+-doped nanoparticles with unprecedented optical and thermal properties that will have broad utility in fundamental research and technological applications.

摘要

涉及808纳米激发的掺钕纳米颗粒在生物成像、生物检测、治疗诊断学和光遗传学等各种生物医学应用中具有巨大潜力。在此,我们展示了具有优异光学特性的核-多壳层掺钕纳米颗粒的合成与表征。我们系统地研究了掺杂浓度、纳米结构设计、激发波长和尺寸效应对掺钕纳米颗粒上转换发光的影响。值得注意的是,经808纳米激发的优化纳米颗粒的发射强度比经980纳米激发的纳米颗粒的发射强度高三倍。令人惊讶的是,掺钕纳米颗粒的光学特性强烈依赖于激发波长。研究了不同激发波长下导致发射强度差异的主要效应以及能量转移机制。有趣的是,重掺钕纳米颗粒不仅显示出高效的上转换发光,而且能够在单一808纳米激发源下将激发源转化为热量。重要的是,这些努力将带来具有前所未有的光学和热学特性的掺钕纳米颗粒,这将在基础研究和技术应用中具有广泛用途。

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