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首页> 外文期刊>Physica, B. Condensed Matter >The effect of CuO and MgO impurities on the optical properties of lithium potassium borate glass
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The effect of CuO and MgO impurities on the optical properties of lithium potassium borate glass

机译:CuO和MgO杂质对硼酸锂钾玻璃的光学性能的影响

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Previous study proved the efficiency of copper as one of the most luminescent activators. In this work, Li _2CO _3-K _2CO _3-H _3BO _3 (LKB) glasses co-doped with copper oxide (CuO) and magnesium oxide (MgO) have been prepared by chemical quenching technique. Two techniques have been applied to investigate the effect of co-dopants on the physical and optical properties of the new glass network. The X-ray Diffraction (XRD) results showed the amorphous nature of the sample. Fourier transform infrared (FTIR) spectra, energy band gap, density, ion concentration, molar volume, Polaron radius and inter-nuclear distance have been analyzed in the light of the different oxidation states of co-doped ions in the glass matrix. The exchange in the concentration of magnesium and copper ions illustrated the great effect of magnesium as a co-dopant on the Photoluminescence (PL) emission of LKB doped with copper oxide. Due to the change in the copper concentration, a broad green emission with intensity of around 300 (a.u) has been observed. Enhancement of about three times has been shown with the increment of 0.1 mol% of CuO and MgO as a co-dopant technique. It is well known that magnesium oxide alone does not show strong-luminescence, but during this increment, MgO acted as activator (co-dopant) for Cu ions. This enhancement may contribute to the energy transfer from Mg ~2 ions to monovalent Cu ~+ ion. The current results are discussed and compared with other related studies.
机译:先前的研究证明铜作为最发光的活化剂之一的效率。在这项工作中,已经通过化学淬火技术制备了共掺杂有氧化铜(CuO)和氧化镁(MgO)的Li _2CO _3-K _2CO _3-H _3BO _3(LKB)玻璃。已经应用了两种技术来研究共掺杂剂对新型玻璃网络的物理和光学性质的影响。 X射线衍射(XRD)结果显示了样品的非晶态性质。根据玻璃基质中共掺杂离子的不同氧化态,分析了傅立叶红外光谱,能带隙,密度,离子浓度,摩尔体积,极化子半径和核间距离。镁和铜离子浓度的交换说明了镁作为共掺杂剂对掺杂有氧化铜的LKB的光致发光(PL)发射的巨大影响。由于铜浓度的变化,观察到强度约为300(a.u)的宽绿色发射。作为共掺杂技术,随着CuO和MgO的0.1摩尔%的增加,已显示出约三倍的增强。众所周知,单独的氧化镁不会显示强发光,但是在此增加过程中,MgO充当了Cu离子的活化剂(共掺杂剂)。这种增强可能有助于从Mg〜2离子到一价Cu〜+离子的能量转移。对当前结果进行了讨论,并与其他相关研究进行了比较。

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