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新型杂金属有机配合物作为上转换 NaY(Ln)F4(Ln = Yb、Er、Tm)纳米材料的首个单源前体。

Novel heterometal-organic complexes as first single source precursors for up-converting NaY(Ln)F4 (Ln = Yb, Er, Tm) nanomaterials.

机构信息

University of Lyon 1, IRCELYON, 2 Avenue A. Einstein, 69626, Villeurbanne, France.

出版信息

Dalton Trans. 2012 Feb 7;41(5):1490-502. doi: 10.1039/c1dt11070e. Epub 2011 Dec 2.

Abstract

First heterometal-organic single source precursors for NaYF(4) nanomaterials as a host matrix for up-conversion emission are reported. These novel heterobimetallic derivatives NaY(TFA)(4)(diglyme) (1), [Na(triglyme)(2)][Y(2)(TFA)(7)(THF)(2)] (2) and Na(2)Y(TFA)(5)(tetraglyme) (3) (TFA = trifluoroacetate), which were fully characterized by elemental analysis, FT-IR and (1)H NMR spectroscopy, TG-DTA data as well as single crystal X-ray structures, are advantageous in terms of being anhydrous and having lower decomposition temperatures in comparison to the homometallic precursor Y(TFA)(3)(H(2)O)(3). In addition, they also contain chelating glyme ligands, which act as capping reagents during decomposition to control the NaYF(4) particle size and render them monodisperse in organic solvents. On decomposition in 1-octadecene, the molecular derivatives 1 and 3 are converted, in the absence of any surfactant or capping reagent, to cubic NaYF(4) nanocrystals at significantly lower temperatures (below 250 °C). At higher temperature, a mixture of the cubic and hexagonal phases was obtained, the relative ratio of the two phases depending on the reaction temperature. A pure hexagonal phase, which is many folds more efficient for UC emission than the cubic phase, was obtained by calcining nanocrystals of mixed phase at 400 °C. In order to co-dope this host matrix with up-converting lanthanide cations, analogous complexes NaLn(TFA)(4)(diglyme) [Ln = Er (4), Tm (5), Yb (6)] and Na(2)Ln(TFA)(5)(tetraglyme) [Ln = Er (7), Yb (8)] were also prepared and characterized. The decomposition in 1-octadecene of suitable combinations and appropriate molar ratios of these yttrium, ytterbium and erbium/thulium derivatives gave cubic and/or hexagonal NaYF(4): Yb(3+), Er(3+)/Tm(3+) nanocrystals (NCs) capped by diglyme or tetraglyme ligands, which were characterized by IR, TG-DTA data, EDX analysis and TEM studies. Surface modification of these NCs by ligand exchange reactions with poly acrylic acid (PAA) and polyethyleneglycol (PEG) diacid 600 was also carried out to render them water soluble. The THF solutions of suitable combinations of the diglyme derivatives were also used to elaborate the thin films of NaYF(4):Yb(3+), Er(3+)/Tm(3+) on a glass or Si wafer substrate by spin coating. The multicolour up-conversion fluorescence was successfully realized in the Yb(3+)/Er(3+) (green/red) and Yb(3+)/Tm(3+) (blue/violet) co-doped NaYF(4) nanoparticles and thin films, which demonstrates that they are promising UC nanophosphors of immense practical interest. The up-conversion excitation pathways for the Er(3+)/Yb(3+) and Tm(3+)/Yb(3+) co-doped materials are discussed.

摘要

首次报道了用于上转换发射的 NaYF(4)纳米材料的异金属-有机单源前体。这些新型异双金属衍生物 NaY(TFA)(4)(二甘醇)(1)、[Na(triglyme)(2)][Y(2)(TFA)(7)(THF)(2)](2)和 Na(2)Y(TFA)(5)(四甘醇)(3)(TFA = 三氟乙酸盐),通过元素分析、FT-IR 和 (1)H NMR 光谱、TG-DTA 数据以及单晶 X 射线结构进行了充分表征,与同金属前体 Y(TFA)(3)(H(2)O)(3)相比,它们具有无水和较低的分解温度的优点。此外,它们还含有螯合甘醇配体,在分解过程中充当封端试剂,以控制 NaYF(4)颗粒尺寸并使它们在有机溶剂中呈现单分散性。在 1-十八烯中的分解过程中,在没有任何表面活性剂或封端试剂的情况下,分子衍生物 1 和 3 在明显较低的温度(低于 250°C)下转化为立方 NaYF(4)纳米晶体。在较高温度下,获得了立方相和六方相的混合物,两相的相对比例取决于反应温度。通过在 400°C 下煅烧混合相的纳米晶体,获得了一种纯六方相,其对于 UC 发射的效率比立方相高许多倍。为了用上转换镧系阳离子共掺杂这种宿主基质,还制备并表征了类似的配合物 NaLn(TFA)(4)(二甘醇)[Ln = Er(4)、Tm(5)、Yb(6)]和 Na(2)Ln(TFA)(5)(四甘醇)[Ln = Er(7)、Yb(8)]。这些镱和铒/铥衍生物的合适组合和适当摩尔比在 1-十八烯中的分解,给出了由 diglyme 或 tetraglyme 配体封端的立方和/或六方 NaYF(4):Yb(3+)、Er(3+)/Tm(3+)纳米晶体(NCs),通过 IR、TG-DTA 数据、EDX 分析和 TEM 研究进行了表征。还通过与聚丙烯酸(PAA)和聚乙二醇(PEG)二酸 600 的配体交换反应对这些 NCs 进行了表面改性,使其具有水溶性。通过适当组合的二甘醇衍生物的 THF 溶液,还通过旋涂在玻璃或 Si 晶片基底上制备了 NaYF(4):Yb(3+)、Er(3+)/Tm(3+)的薄膜。在 Yb(3+)/Er(3+)(绿色/红色)和 Yb(3+)/Tm(3+)(蓝色/紫色)共掺杂的 NaYF(4)纳米粒子和薄膜中成功实现了多色上转换荧光,这表明它们是具有巨大实际意义的 UC 纳米荧光粉。讨论了 Er(3+)/Yb(3+)和 Tm(3+)/Yb(3+)共掺杂材料的上转换激发途径。

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