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Transparent Conductive p-Type Cuprous Oxide Films in Vis-NIR Region Prepared by Ion-Beam Assisted DC Reactive Sputtering

机译:通过离子束辅助DC反应溅射制备的Vis-NIR区域中的透明导电p型氧化铝膜

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摘要

Cu2O thin film has been widely studied due to its intrinsic p-type conductivity. It can be used as p-type transparent conductive electrode or hole transport layer in various potential applications. However, its intrinsic p-type conductivity is very limited, which needs to be optimized by introducing acceptor defects. In this work, the electrical properties of the Cu2O films was improved through introducing interstitial oxygen in the films those were deposited via direct current sputtering assisted by oxygen ion beam. The results show that with oxygen ion beam current increase, the carrier concentration effectively improves. However, with more interstitial oxygen introduced, the film’s crystallinity significantly reduces, as well as the carrier mobility decreases. Meanwhile, all of the Cu2O films present moderate transmittance in the visible region (400–800 nm), but ideal transmittance in the near infrared (NIR) light region (800–2500 nm). When compared with the strong reflection of the n-type transparent conductive film to the near infrared light, the Cu2O film is transparent conductive in NIR region, which expands its application in the fabrication of NIR electrical devices.
机译:氧化亚铜薄膜具有由于其固有的p型导电性进行了广泛研究。它可以用作各种潜在应用p型透明导电电极或空穴传输层。但是,其固有的p型导电性是非常有限的,其需要通过引入受主缺陷进行优化。在这项工作中,氧化亚铜膜的电性能通过在这些规则是由氧离子束辅助直流溅射沉积的膜中引入间隙氧进行了改进。结果表明,与氧的离子束电流的增加,载流子浓度有效地提高。然而,随着更多的间隙氧引入,该膜的结晶度降低显著,以及载流子迁移而降低。同时,所有的氧化亚铜膜呈现在可见光区(400-800纳米)的透射率适中,但在近红外(NIR)透射率理想的光区(800-2500纳米)。当与n型透明导电膜的近红外光的强反射相比,氧化亚铜膜是在NIR区域,它扩展在NIR电气装置的制造及其应用透明导电。

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