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首页> 外文期刊>Angewandte Chemie >A CuO Nanowire-Based Alternating Current Oxide Powder Electroluminescent Device with High Stability
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A CuO Nanowire-Based Alternating Current Oxide Powder Electroluminescent Device with High Stability

机译:基于CUO纳米线的交流氧化物粉电致发光器件,具有高稳定性

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摘要

An AC-driven powder electroluminescent (EL) device has been achieved by constructing a CuO nanowire-Zn2GeO4:Mn phosphor heterogeneous junction. The CuO nanowires enhance the local electric field, resulting in electroluminescence of an oxide-based phosphor in EL devices owing to field injection at the nanowire tips. The CuO nanowire array was synthesized by an insitu thermal oxidation method at 400 degrees C in air and employed as an electric field enhancement layer in the EL device. The heterogeneous structures were created through drop coating of a phosphor suspension on the CuO nanowire array. The initial EL device tests show good luminescent performance with very promising brightness maintenance for over 360h, with a loss of luminescent intensity of under 1% at over 10cdm(-2) luminance. The fabrication method offers the prospect of simple, low-cost, large-scale EL devices with the potential to solve the limited operational lifetime of sulfide-based AC powder EL devices.
机译:通过构建CuO纳米线-ZN2GeO 4:Mn磷光体异质结来实现交流驱动的粉末电致发光(EL)装置。 CuO纳米线增强了局部电场,由于纳米线尖端的现场注射而导致EL器件中的氧化物基荧光体的电致发光。 CuO纳米线阵列通过在空气中的400℃下的Insitu热氧化方法合成,并且在EL器件中用作电场增强层。 通过在CuO纳米线阵列上的磷光体悬浮液的掉涂层产生异质结构。 初始EL器件测试显示出良好的发光性能,具有超过360h的非常有前景的亮度维护,并且发光强度损失超过10cdm(-2)亮度下降1%。 制造方法提供简单,低成本,大型EL器件的前景,具有解决基于硫化物的AC粉末EL器件的有限操作寿命。

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