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Controllable synthesis of Ln3+ (Ln = Tb, Eu) doped zinc phosphate nano-/micro-structured materials : phase, morphology and luminescence properties

机译:Ln3 +(Ln = Tb,Eu)掺杂的磷酸锌纳米/微结构材料的可控制合成:相,形态和发光性质

摘要

Ln3+ (Ln = Tb, Eu) doped zinc phosphate tetrahydrate (ZPT:Ln3+) and ammonium zinc phosphate (AZP:Ln3+) nano-/micro-structured materials were synthesized in aqueous solution without the addition of any structure-directing agent. The phase structures, morphologies and luminescence properties of the as-synthesized samples were investigated by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX), transmission electron microscopy (TEM), photoluminescence (PL) spectroscopy and lifetime. These investigations indicate that different phosphate sources MnH(3-n)PO 4 (M = NH4 + or Na+, n = 1, 2, 3) can lead to the altering of morphology from nanosheet to microflower, but have no significant effect on the phase structure of the samples. The microlump, nanosheet, and microflower (constructed by the primary microlumps or nanosheets) of orthorhombic ZPT:Ln3+ could be selectively prepared by adjusting the pH value from 3.5 to 7.0. A mixture of orthorhombic ZPT:Ln3+ and monoclinic AZP:Ln3+ with a microflower morphology was obtained when the pH value was adjusted to 8.0. Monoclinic AZP:Ln3+ microplate, microcube and nanoparticle morphologies were obtained at pH values of 8.5, 9.0 and 11.0 respectively. The phase transformation and growth mechanism of the diverse morphologies were proposed, and ZPT:Ln3+ (Ln3+ = Eu or Tb) samples exhibit red or green emission under the excitation of UV light.
机译:在水溶液中合成了Ln3 +(Ln = Tb,Eu)掺杂的磷酸锌四水合物(ZPT:Ln3 +)和磷酸铵锌(AZP:Ln3 +)纳米/微结构材料,无需添加任何结构导向剂。通过X射线衍射(XRD),扫描电子显微镜(SEM),能量色散X射线光谱(EDX),透射电子显微镜(TEM),光致发光来研究合成样品的相结构,形态和发光特性(PL)光谱和寿命。这些研究表明,不同的磷酸盐源MnH(3-n)PO 4(M = NH4 +或Na +,n = 1、2、3)可以导致从纳米片到微花的形态变化,但对纳米花没有明显影响。样品的相结构。正交晶系ZPT:Ln3 +的微团块,纳米片和微花(由初级微团或纳米片构成)可以通过将pH值从3.5调节至7.0来选择性制备。当将pH值调节至8.0时,获得具有微花形态的正交晶体ZPT:Ln3 +和单斜AZP:Ln3 +的混合物。在pH值分别为8.5、9.0和11.0时获得了单斜AZP:Ln3 +微孔板,微立方体和纳米颗粒形态。提出了多种形态的相变和生长机理,ZPT:Ln3 +(Ln3 + = Eu或Tb)样品在紫外光的激发下呈现红色或绿色发射。

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