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首页> 外文期刊>Journal of Applied Physics >Gallium-doped zinc oxide films as transparent electrodes for organic solar cell applications
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Gallium-doped zinc oxide films as transparent electrodes for organic solar cell applications

机译:掺杂镓的氧化锌薄膜作为有机太阳能电池应用的透明电极

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摘要

We report microstructural characteristics and properties of gallium-doped ZnO films deposited on glass by pulsed laser deposition. The Zn_(0.95)Ga_(0.05)O film deposited at 200℃ and 1 x 10~(-3) Torr showed predominant < 0001 > orientation with a metallic behavior and a resistivity of 2 x 10~(-4) Ω cm at room temperature. Low resistivity of the ZnGaO films has been explained in terms of optimal combination of carrier concentration and minimized scattering, and is correlated with the microstructure and the deposition parameters. Power conversion efficiency comparable to indium tin oxide-based devices (1.25 ± 0.05%) is achieved on a Zn_(0.95)Ga_(0.05)O/Cu-phthalocyanine/C_(60) double-heterojunction solar cell.
机译:我们报告了通过脉冲激光沉积在玻璃上沉积的掺杂镓的ZnO薄膜的微观结构特征和性能。在200℃和1 x 10〜(-3)Torr下沉积的Zn_(0.95)Ga_(0.05)O膜显示出主要的<0001>取向,具有金属行为,并且在2x 10〜(-4)Ωcm下的电阻率室内温度。 ZnGaO膜的低电阻率已根据载流子浓度的最佳组合和最小的散射进行了解释,并且与微结构和沉积参数相关。在Zn_(0.95)Ga_(0.05)O / Cu-酞菁/ C_(60)双异质结太阳能电池上实现了可与基于铟锡氧化物的器件相比的功率转换效率(1.25±0.05%)。

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