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A Novel Orange-Red Emitting ZnB4O7:Eu3+Phosphor with Urchin-Like Nanostructure

机译:具有Urchin样纳米结构的新型橙红发光ZnB4O7:Eu3 +荧光粉

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A novel phosphor, ZnB4O7:Eu3+, with urchin-like structure consisting of radially arranged high density nanorods was successfully synthesized by hydrothermal process at 150°C for 24 h. The nanorods were measured from 200 to 400 nm in diameter and severalµm in length. The urchins were fewµm to 40 µm in diameter. The ZnB4O7:Eu3+phosphors were efficiently excited by ultraviolet (UV ~ 254 nm) to visible light of ~ 220 to 450 nm and exhibited intense orange-red emission consisting of main peaks at 590, 615, and 695 nm due to the charge transfer in the host andf→ftransitions (5D0to7F1,2,4) of the Eu3+ions. Effect of the Eu3+ions concentration on the photoluminescence (PL) emission intensity was investigated and it was found that 5 at% Eu3+is the optimum concentration. Meanwhile, the concentration quenching mechanism was discussed. The key parameters, such as temperature dependent PL and CIE values of ZnB4O7:Eu3+phosphors, were studied. The ZnB4O7:Eu3+phosphor exhibited good thermal stability and better absorption cross section compared to the commercial Y2O2S:Eu3+phosphor. All these characteristics indicate that the phosphor will be a potential candidate for the UV based white LEDs.
机译:通过在150°C的温度下进行24 successfullyh的水热处理,成功合成了一种新的荧光粉ZnB4O7:Eu3 +,该荧光粉具有由径向排列的高密度纳米棒组成的类似顽童的结构。纳米棒的直径为200至400 200nm,长度为几微米。海胆的直径从几微米到40微米不等。 ZnB4O7:Eu3 +荧光粉被紫外线(UV〜254 nm)有效激发至〜220至450 nm的可见光,并由于电荷转移而表现出强烈的橙红色发射,该橙红色发射由590、615和695 nm的主峰组成在Eu3 +离子的主体和f→f转变(5D0至7F1,2,4)中。研究了Eu3 +离子浓度对光致发光(PL)发射强度的影响,发现5%at%Eu3 +是最佳浓度。同时,讨论了浓度猝灭机理。研究了诸如ZnB4O7:Eu3 +磷的温度依赖的PL和CIE值等关键参数。与商用Y2O2S:Eu3 +磷光体相比,ZnB4O7:Eu3 +磷光体表现出良好的热稳定性和更好的吸收截面。所有这些特性表明,磷光体将成为基于UV的白色LED的潜在候选者。

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