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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Investigation of possible replacement of protective magnesium oxide layer in plasma display panels by barium ternary oxides
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Investigation of possible replacement of protective magnesium oxide layer in plasma display panels by barium ternary oxides

机译:研究用三元氧化钡代替等离子显示面板中的保护性氧化镁层

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摘要

The firing voltage (FV) of gas discharge in a test cell of plasma display materials was investigated for standard protective layers of MgO deposited by electron beam, and ternary BaY2O4 and BaGa2O4 oxides grown by pulsed laser deposition on the special dielectric coated glass substrates. The determined FVs for MgO (160 V), BaY2O4 (210 V) and BaGa2O4 (257 V) lead to the conclusion that a replacement of MgO by these ternary oxides is not expedient for plasma display panels. Using results from luminescence spectroscopy, values for the energy gap E-g approximate to 6.2 and 5.8 eV were estimated for BaY2O4 and BaGa2O4, respectively. The main reason for the observed high FVs is attributed to strong electron affinities x, where x( BaY2O4) < x (BaGa2O4).
机译:研究了等离子体显示材料测试电池中气体放电的点火电压(FV),以了解电子束沉积的MgO的标准保护层以及在特殊的介电涂层玻璃基板上通过脉冲激光沉积生长的三元BaY2O4和BaGa2O4氧化物。确定的MgO(160 V),BaY2O4(210 V)和BaGa2O4(257 V)的FV得出的结论是,等离子显示面板不宜用这些三元氧化物代替MgO。使用发光光谱的结果,分别估计BaY2O4和BaGa2O4的能隙E-g值接近6.2和5.8 eV。观察到的高FV的主要原因归因于强大的电子亲和力x,其中x(BaY2O4)

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