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首页> 外文期刊>Journal of Electronic Materials >Preparation of LaOBr:Er3+ Up-conversion Luminescent Nanobelts by Electrospinning Then Bromination
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Preparation of LaOBr:Er3+ Up-conversion Luminescent Nanobelts by Electrospinning Then Bromination

机译:电纺丝并溴化制备LaOBr:Er3 +上转换发光纳米带

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摘要

Electrospun nanobelts were prepared from lanthanum oxybromide doped with trivalent erbium ions (La2O3:Er3+), then up-conversion nanobelts were successfully synthesized from these by bromination with ammonium bromide (NH4Br) powder as bromine source and use of a double-crucible method. The products were characterized in detail by x-ray diffractometry, scanning electron microscopy, energy dispersion spectroscopy, and fluorescence spectroscopy. The results indicated the LaOBr:Er3+ nanobelts were tetragonal in structure with the space group P4mm. The width and the thickness of LaOBr:Er3+ nanobelts were 3.06 +/- A 0.42 mu m and 290 nm, respectively. On excitation with a 980-nm diode laser, LaOBr:Er3+ the nanobelts emitted strong green and red up-conversion emission centered at 522 nm, 541 nm, and 667 nm. The green and red emission was assigned to the energy level transitions H-2(11/2) -> I-4(15/2), S-4(3/2) -> I-4(15/2), and F-4(9/2) -> I-4 (l5/2) of the erbium ions (Er3+). A mechanism of formation LaOBr:Er3+ up-conversion luminescence nanobelts is proposed. This bromination technique not only results in preservation of the morphology of precursor rare earth oxides, it can also be used to fabricate other pure-phase rare earth oxybromide luminescence nanomaterials at relatively low calcination temperatures.
机译:由掺有三价离子的氢溴酸镧(La2O3:Er3 +)制备静电纺丝纳米带,然后通过以溴化铵(NH4Br)粉末为溴源进行溴化并采用双坩埚法成功地合成了上转换纳米带。通过X射线衍射,扫描电子显微镜,能量色散光谱和荧光光谱对产物进行详细表征。结果表明,LaOBr:Er3 +纳米带的结构为四边形,空间群为P4 / nmm。 LaOBr:Er3 +纳米带的宽度和厚度分别为3.06 +/- A 0.42μm和290 nm。在用980 nm二极管激光器LaOBr:Er3 +激发时,纳米带发出了以522 nm,541 nm和667 nm为中心的强烈的绿色和红色向上转换发射。绿色和红色发射被分配给能级转换H-2(11/2)-> I-4(15/2),S-4(3/2)-> I-4(15/2),和F离子(Er3 +)的F-4(9/2)-> I-4(l5 / 2)。提出了LaOBr:Er3 +上转换发光纳米带的形成机理。该溴化技术不仅可以保持前体稀土氧化物的形态,而且还可以用于在相对较低的煅烧温度下制备其他纯相稀土氧溴化物发光纳米材料。

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