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A high performance fluorescence switching system triggered electrochemically by Prussian blue with upconversion nanoparticles

机译:高性能荧光交换系统引发了普鲁士蓝的电化学原理上转换纳米粒子

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A high performance fluorescence switching system triggered electrochemically by Prussian blue with upconversion nanoparticles was proposed. We synthesized a kind of hexagonal monodisperse beta-NaYF4:Yb3+, Er3+, Tm3+ upconversion nanoparticle and manipulated the intensity ratio of red emission (at 653 nm) and green emission at (523 and 541 nm) around 2 : 1, in order to match well with the absorption spectrum of Prussian blue. Based on the efficient fluorescence resonance energy transfer and inner-filter effect of the as-synthesized upconversion nanoparticles and Prussian blue, the present fluorescence switching system shows obvious behavior with high fluorescence contrast and good stability. To further extend the application of this system in analysis, sulfite, a kind of important anion in environmental and physiological systems, which could also reduce Prussian blue to Prussian white nanoparticles leading to a decrease of the absorption spectrum, was chosen as the target. And we were able to determine the concentration of sulfite in aqueous solution with a low detection limit and a broad linear relationship.
机译:高性能荧光交换系统引发了普鲁士蓝的电化学原理提出了上转换纳米粒子。合成一种六角单分散的beta-NaYF4: Yb3 +、Er3 + Tm3 upconversion纳米颗粒和操纵强度比率红色的发射和绿色排放(653海里)(523和541海里)2:1,为了匹配与普鲁士的吸收光谱蓝色的。共振能量转移和inner-filter效果as-synthesized的上转换纳米粒子普鲁士蓝,目前的荧光具有高交换系统显示明显的行为荧光对比度和良好的稳定性。进一步扩展该系统的应用分析、亚硫酸盐、一种重要阴离子环境和生理系统也可以减少普鲁士普鲁士蓝白纳米颗粒导致的减少吸收光谱,被选为目标。我们能够确定浓度与较低的亚硫酸盐溶液检出限和广泛的线性关系。

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