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Y_2O_3-based oxide phosphor thin-film electroluminescent devices

机译:Y_2O_3基氧化磷薄膜电致发光器件

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This article introduces newly developed multicomponent oxide host materials for electroluminescent phosphors. These are composed of Y_2O_3 and another binary compound such as A1_2O_3, Ga_2O_3, Gd_2O_3, In_2O_3, B_2O_3 or GeO_2. The various Mn-activated (Y_2O_3)_(1-x)-(oxide)_x phosphor thin films were deposited while varying the composition by r.f. magnetron sputtering and postannealed. The obtained electroluminescent and photoluminescent emissions from the ((Y_2O_3)_(1-x)-(oxide)_x):Mn phosphor thin-film emitting layers" were strongly dependent on the preparation and postannealing conditions as well as on the composition. The highest luminance and photoluminescent intensity were obtained by using a (Y_2O_3)_(1-x)-(oxide)_x:Mn thin-film emitting layer prepared with an optimized composition. Both the obtained electroluminescent and photoluminescent characteristics were correlated to the crystallinily of the thin-film emitting layers. High luminances above 7000 cd/m~2 were obtained in ((Y_2O_3)_(0.6)-(GeO_2)_(0.4)):Mn and ((Y_2O_3)_(0.5)-(Ga_2O_3)_(0.5)):Mn thin-film electroluminescent devices fabricated under optimal condition and driven by an ac sinusoidal wave voltage at 1 kHz.
机译:本文介绍了用于电致发光磷光体的新开发的多组分氧化物主体材料。这些由Y_2O_3和另一种二进制化合物组成,例如A1_2O_3,GA_2O_3,GD_2O_3,IN_2O_3,B_2O_3或GEO_2。各种Mn-活化(Y_2O_3)_(1-X) - (氧化物)_X磷光体薄膜沉积,同时通过R.F改变组合物。磁控溅射和底片。获得的电致发光和光致发光的来自((Y_2O_3)_(1-x) - (氧化物)_x):Mn磷光体薄膜发光层“强烈依赖于制剂和后终止条件以及组合物。该通过使用用优化组合物制备的(Y_2O_3)_(1-X)_(氧化物)_(氧化物)_(氧化物)_(氧化物)_x:Mn薄膜发光层获得最高的亮度和光致发光强度。所获得的电致发光和光致发光特性与结晶相关薄膜发射层。获得高于7000cd / m〜2的高亮度((y_2o_3)_(0.6) - (geo_2)_(0.4)):mn和((y_2o_3)_(0.5) - (ga_2o_3 )_(0.5)):Mn薄膜电致发光器件在最佳状态下制造,并由1kHz的AC Sinuinal波电压驱动。

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