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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Highly efficient multicolor up-conversion emissions and their mechanisms of monodisperse NaYF4 : Yb,Er core and core/shell-structured nanocrystals
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Highly efficient multicolor up-conversion emissions and their mechanisms of monodisperse NaYF4 : Yb,Er core and core/shell-structured nanocrystals

机译:NaYF4单分散NaYF4的高效多色上转换发光及其机理:Yb,Er核和核/壳结构纳米晶体

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This paper comprehensively presents the highly efficient multicolor up-conversion (UC) emissions and related mechanisms of monodisperse NaYF4:Yb,Er core (alpha- and beta-NaYF4:Yb,Er) and core/shell (alpha-NaYF4:Yb,Er@alpha-NaYF4 and beta-NaYF4:Yb,Er@alpha-NaYF4) nanocrystals with controlled size (5-14 nra for alpha-phase nanocrystals and 20-300 nm for beta-phase nanocrystals), chemical composition, and surface state. These nanoparticles were synthesized via a unique delayed nucleation pathway using trifluoroacetates as precursors in hot solutions of oleic acid/oleylamine/1-octadecene. With the naked eye and natural light the intense multicolor UC emissions (red, yellow, or green, without filters) can be observed in cyclohexane dispersions of as-prepared nanocrystals (1 wt%) excited by a 980 nm laser source (power density 1.22 W cm(-2)). On the basis of compositional optimization for beta-NaYF4:Yb,Er nanocrystals, the intensity ratio of green to red emission (f(g/r)) reaches ca. 30, the highest value to our knowledge. The highly efficient multicolor UC emissions were aroused from the controlled crystallite size, phase, and associated defect state. beta-NaYF4:Yb,Er and large beta-NaYF4:Yb,Er nanocrystals displayed a normal two-photon UC process excited by a 980 nm NIR laser, while small P-NaYF4:Yb,Er nanocrystals showed an unusual partially three-photon process. Shell formation could remarkably decrease the surface defects and surface ligands influence and thus decrease the associated nonradiative decays. As a result, the core/shell-structured alpha-NaYF4:Yb,Er@alpha-NaYF4 and beta-NaYF4:Yb,Er@alpha-NaYF4 nanocrystals exhibited greatly enhanced green emission intensity,fg/r, and saturation power with respect to their counterparts. The remarkable UC properties of the as-synthesized NaYF4:Yb,Er core and core/shell nanocrystals demonstrate that they are promising UC nanophosphors of adequate theoretical and practical interest.
机译:本文全面介绍了单分散NaYF4:Yb,Er核(alpha-和beta-NaYF4:Yb,Er)和核/壳(alpha-NaYF4:Yb,Er)的高效多色上转换(UC)发射及其相关机理α-NaYF4和β-NaYF4:Yb,Erα-NaYF4纳米晶体具有受控的尺寸(α相纳米晶体为5-14 nra,β相纳米晶体为20-300 nm),化学组成和表面状态。这些纳米颗粒通过独特的延迟成核途径合成,使用三氟乙酸盐作为前体在油酸/油胺/ 1-十八碳烯的热溶液中。用裸眼和自然光,可以在由980 nm激光源(功率密度1.22)激发的制备好的纳米晶体(1 wt%)的环己烷分散液中观察到强烈的多色UC发射(红色,黄色或绿色,不带滤光片)。 W cm(-2))。在对β-NaYF4:Yb,Er纳米晶体进行成分优化的基础上,绿色与红色发射的强度比(f(g / r))达到ca。 30,以我们所知的最高价值。受控的微晶尺寸,相位和相关的缺陷状态引起了高效的多色UC发射。 β-NaYF4:Yb,Er和大的β-NaYF4:Yb,Er纳米晶体显示正常的两光子UC过程,受980 nm NIR激光激发,而小的P-NaYF4:Yb,Er纳米晶体显示不寻常的部分三光子处理。壳的形成可以显着减少表面缺陷和表面配体的影响,从而减少相关的非辐射衰变。结果,核/壳结构的α-NaYF4:Yb,Er @α-NaYF4和β-NaYF4:Yb,Er @α-NaYF4纳米晶体相对于绿色晶体显示出极大的绿色发射强度,fg / r和饱和功率。给他们的同行。合成的NaYF4:Yb,Er核和核/壳纳米晶体的显着UC特性表明,它们是具有足够理论和实践意义的有前途的UC纳米磷光体。

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