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首页> 外文期刊>Nanoscale >Optimising FRET-efficiency of Nd3+-sensitised upconversion nanocomposites by shortening the emitter-photosensitizer distance
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Optimising FRET-efficiency of Nd3+-sensitised upconversion nanocomposites by shortening the emitter-photosensitizer distance

机译:优化FRET-efficiency Nd3 +敏感上转换纳米复合材料通过缩短emitter-photosensitizer距离

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Nd3+-Sensitised luminescent upconversion nanoparticles (UCNPs) have gained interest recently as theranostics due to their near-infrared (NIR) light excitation with a better tissue penetration depth. One example is the core/shell design NaYF4:Yb,Er@Nd,Yb. When harvesting the upconversion energy in such architectures, the long emitter-photosensitizer (i.e.Er3+-PS) distances lead to inefficient Forster resonance energy transfer (FRET). Herein, we report a new nanocomposite NaYF4:Nd,Yb@Yb@Yb,Er@Y with Nd(3+)ions in the core and Er(3+)ions in the shell to shorten the Er-PS distance to achieve better FRET. Furthermore, an outer non-emitting protective Y(3+)shell and a conducting Yb(3+)shell reduced surface quenching and Er3+-to-Nd(3+)energy back transfer effects, respectively. The upconversion FRET and downshifting emission efficiencies were simultaneously optimised by adjusting the thickness of the Y(3+)shell, and the FRET efficiency was at least 3.7 times that of the reference NaYF4:Yb,Er@Yb@Nd,Yb@Y in a photodynamic therapy (PDT) model.
机译:Nd3 +敏感发光上转换纳米颗粒(UCNPs)获得了利益由于他们在开展近红外(NIR)光激发更好的组织穿透深度。核/壳设计NaYF4: Yb, Er@Nd Yb。收获的上转换能量体系结构、长emitter-photosensitizer(i.e.Er3 + p)距离导致效率低下福斯特共振能量转移(FRET)。我们报告一个新的纳米复合材料NaYF4: Nd, Yb@Yb@Yb Er@Y with, (3 +) ions》核心和Er(3 +)离子外壳缩短Er-PS距离达到更好的烦恼。此外,外部少保护Y(3 +)壳牌和导电Yb(3 +)壳牌减少表面淬火和Er3 + -to-Nd(3 +)能量分别传输的影响。烦恼和降低速度发射效率同时通过调整优化Y(3 +)外壳,厚度和烦恼至少3.7倍的效率参考NaYF4: Yb, Er@Yb@Nd, Yb@Y光动力疗法(PDT)模型。

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