Thin Oxide Films for Transparent Electronics and Full Color Displays

O. Bordun, B. Bordun, I. M. Kofliuk, I. Kukharskyy, I. Medvid, M.V. Protsak
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Abstract

The cathodoluminescence properties of thin oxide films $\beta-\mathbf{Ga}2\mathbf{O}_{3},\mathbf{ZnGa}_{2}\mathbf{O}_{4},\mathbf{ZnGn}_{2}\mathbf{O}_{4}:\mathbf{Mn},\mathbf{Zn}\mathbf{Ga}_{2}\mathbf{O}_{4}:\mathbf{Cr},\mathbf{Y}_{2}\mathbf{O}_{3}:\mathbf{Eu},\mathbf{Gd}_{2}\mathbf{O}_{3}:\mathbf{Eu},(\mathbf{Gd}_{2}\mathbf{O}_{3})_{0.67}(\mathbf{ZnO})_{0.33}: \mathbf{Eu},(\mathbf{Y}_{0.06}\mathbf{Ga}_{0.94})_{2}\mathbf{O}_{3}: \mathbf{Eu}$ and $(\mathbf{Y}_{0.06}\mathbf{Ga}_{0.94})_{2}\mathbf{O}_{3}$: Cr obtained by high-frequency (HF) ion-plasma sputtering on fused silica substrates. A number of luminescence parameters have been determined and it has been shown that a full-color flat-panel display can be realized on the basis of these films. It is shown that the use of reductive annealing of these films in a hydrogen atmosphere leads to an increase in the electrical conductivity of the films by a factor of $10^{3}-10^{8}$. The results were discussed and it was found that electrically conductive thin-film phosphors $\beta-\mathbf{Ga}_{2}\mathbf{O}_{3}$ (blue luminescence), $\mathbf{Gd}_{2}\mathbf{O}_{3}:\mathbf{Eu}$ (red luminescence) and especially $(\mathbf{Gd}_{2}\mathbf{O}_{3})_{0.67}(\mathbf{ZnO})_{0.33}: \mathbf{Eu}$ (red luminescence) are quite promising for use in full-color displays with the point of view of their luminescent and energy properties.
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用于透明电子和全彩色显示器的氧化薄膜
薄氧化膜的阴极发光性质\β- \ mathbf {Ga} 2 \ mathbf {O} _ {3}, \ mathbf {ZnGa} _ {2} \ mathbf {O} _ {4}, \ mathbf {ZnGn} _ {2} \ mathbf {O} _ {4}: \ mathbf {Mn}, \ mathbf{锌}\ mathbf {Ga} _ {2} \ mathbf {O} _ {4}: \ mathbf {Cr}, \ mathbf {Y} _ {2} \ mathbf {O} _ {3}: \ mathbf欧盟}{\ mathbf {Gd} _ {2} \ mathbf {O} _ {3}: \ mathbf{欧盟},(\ mathbf {Gd} _ {2} \ mathbf {O} _ {3}) _ {0.67} (\ mathbf{氧化锌})_ {0.33}:\ mathbf{欧盟},(\ mathbf {Y} _ {0.06} \ mathbf {Ga} _ {0.94}) _ {2} \ mathbf {O} _ {3}:\mathbf{Eu}$和$(\mathbf{Y}_{0.06}\mathbf{Ga}_{0.94})_{2}\mathbf{O}_{3}$:用高频(HF)离子等离子体溅射在熔融硅衬底上获得的Cr。测定了许多发光参数,并证明了在这些薄膜的基础上可以实现全彩平板显示。结果表明,在氢气气氛中对这些薄膜进行还原性退火,可使薄膜的电导率提高10^{3}~ 10^{8}$。对结果进行了讨论,发现导电薄膜荧光粉$\beta-\mathbf{Ga}_{2}\mathbf{O}}{3}$(蓝色发光)、$\mathbf{Gd}_{2}\mathbf{O}} {3}:\mathbf{Eu}$(红色发光),特别是$(\mathbf{Gd}_{2}\mathbf{O}} {3})_{0.67}(\mathbf{ZnO})_{0.33}: \mathbf{Eu}$(红色发光)在全彩显示中具有很好的应用前景。
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