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NaF 介导的多色 Na(x)ScF(3+x):Yb/Er 上转换纳米晶体的控制合成。

NaF-mediated controlled-synthesis of multicolor Na(x)ScF(3+x):Yb/Er upconversion nanocrystals.

机构信息

School of Chemical and Biomedical Engineering, Nanyang Technological University, 62 Nanyang Drive, 637459, Singapore.

出版信息

Nanoscale. 2015 Mar 7;7(9):4048-54. doi: 10.1039/c4nr06637e.

Abstract

Synthesis of lanthanide-doped upconversion nanocrystals (LDUNs) with controlled morphology and luminescence has long been desired in order to fulfill various application requirements. In this work, we have investigated the effect of the NaF : Ln(3+) molar ratio, in the range of 1 to 20, on the morphology, crystal structure, and upconversion properties of NaxScF(3+x):Yb/Er nanocrystals that are reported to possess different upconversion properties from those of NaYF4:Yb/Er nanocrystals. The experimental results prove that the NaF : Ln(3+) molar ratio influences significantly the growth process of the nanocrystals, i.e. a low NaF : Ln(3+) molar ratio results in hexagonal NaScF4 nanocrystals, while a high NaF : Ln(3+) molar ratio favors monoclinic Na3ScF6 nanocrystals. When the NaF : Ln(3+) molar ratio is as high as 6 or above, phase separation is found and hexagonal NaYbF4 nanocrystals showed up for the first time. Simply by adjusting the NaF : Ln(3+) molar ratio, we have successfully achieved the simultaneous control of the shape, size, as well as the crystallographic phase of the NaxScF(3+x):Yb/Er nanocrystals, which give different red to green (R/G) ratios (integral area), leading to a multicolor upconversion luminescence from orange-red to green. This study provides a vivid example to track and interpret the formation mechanisms and growth processes of NaxScF(3+x):Yb/Er nanocrystals, which shall be instructive for guiding the controlled synthesis of other LDUNs and extending their according applications in optical communication, color display, anti-counterfeiting, bioimaging, and so on.

摘要

为了满足各种应用需求,长期以来一直需要合成具有可控形态和发光性能的镧系掺杂上转换纳米晶体(LDUNs)。在这项工作中,我们研究了 NaF:Ln(3+)摩尔比(1 到 20 范围内)对 NaxScF(3+x):Yb/Er 纳米晶体形态、晶体结构和上转换性能的影响,据报道,这些纳米晶体具有与 NaYF4:Yb/Er 纳米晶体不同的上转换性能。实验结果证明,NaF:Ln(3+)摩尔比对纳米晶体的生长过程有显著影响,即低 NaF:Ln(3+)摩尔比导致六方 NaScF4 纳米晶体的形成,而高 NaF:Ln(3+)摩尔比有利于单斜 Na3ScF6 纳米晶体的形成。当 NaF:Ln(3+)摩尔比高达 6 或更高时,发现发生了相分离,并且首次出现了六方 NaYbF4 纳米晶体。通过简单地调整 NaF:Ln(3+)摩尔比,我们成功地实现了 NaxScF(3+x):Yb/Er 纳米晶体的形状、尺寸以及晶相的同时控制,从而得到不同的红到绿(R/G)比(积分面积),实现了从橙红色到绿色的多色上转换发光。这项研究为跟踪和解释 NaxScF(3+x):Yb/Er 纳米晶体的形成机制和生长过程提供了一个生动的实例,这对于指导其他 LDUNs 的可控合成以及将其相应的应用扩展到光学通信、彩色显示、防伪、生物成像等领域具有指导意义。

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