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首页> 外文期刊>Journal of Materials Science >Spectrochemical studies on charge transfer bands due to d0, d5 and d10 ions in a sodium silicate glass
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Spectrochemical studies on charge transfer bands due to d0, d5 and d10 ions in a sodium silicate glass

机译:硅酸钠玻璃中由于d0,d5和d10离子引起的电荷转移带的光谱化学研究

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摘要

Titanium, vanadium and copper are normally present in glasses in their variable valency states but only Ti4+ (3d0), V5+ (3d0) and Cu+ (3d10) ions were found to exhibit charge transfer bands in glasses in the ultra-violet region of light. The molar extinction coefficients of these ions were calculated at their wavelength maxima in a 30Na2O·70SiO2 glass using Beer's-Bouger's equation and the intensities of their bands were found to lie of the order of around 103 gm mol lit−1cm−1. The values of the molar extinction coefficients for these ions were compared with those of Ce4+ (5d0), Cr6+ (3d0) and Fe3+ (3d5) ions calculated earlier in 30Na2O·70SiO2 glass at their wavelength maxima in UV-region. The mechanism of electronic transition was suggested as L → M, M → L and M → L → M charge transfer available till date as a result of absorption of high energy UV-radiation extensively for d0, d5 and d10 ions respectively in glass depending upon the glass melting conditions. The low energy tail, of the UV-bands due to all these ions were found to obey Urbach's Rule in the present sodium silicate glass. The intensities of the charge transfer bands due to these ions are expected to depend upon their nature and symmetries, electronic configurations and wavelength of maximum absorption in the glass.
机译:钛,钒和铜通常以可变价态存在于玻璃中,但只有Ti4 + (3d0 ),V5 + (3d0 )和Cu + (3d10 )离子在紫外光区域的玻璃中显示出电荷转移带。使用Beer's-Bouger方程在30Na2 O·70SiO2 玻璃中以其最大波长计算这些离子的摩尔消光系数,发现其能带强度约为103 < / sup> gm mol lit-1 cm-1 。将这些离子的摩尔消光系数值与Ce4 + (5d0 ),Cr6 + (3d0 )和Fe3 + (3d5 )离子在30Na2 O·70SiO2 玻璃中在紫外线区的最大波长处较早地计算出。电子跃迁的机理被认为是由于d0 ,d5 广泛吸收了高能紫外线辐射,直到现在为止L→M,M→L和M→L→M电荷转移有效。取决于玻璃的熔融条件,玻璃中的d10和d10 离子。在所有的硅酸钠玻璃中,由于所有这些离子而导致的UV谱带的低能尾部都遵循了乌尔巴赫法则。预期由于这些离子而引起的电荷转移带的强度取决于其性质和对称性,电子结构以及玻璃中最大吸收的波长。

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  • 来源
    《Journal of Materials Science 》 |2001年第6期| 1555-1562| 共8页
  • 作者

    R. S. Singh; S. P. Singh;

  • 作者单位

    Department of Ceramic Engineering Institute of Technology Banaras Hindu University;

    Department of Ceramic Engineering Institute of Technology Banaras Hindu University;

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  • 正文语种 eng
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