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Cu/Cu2O nanocomposite films as a p-type modified layer for efficient perovskite solar cells

机译:Cu / Cu2O纳米复合薄膜作为高效钙钛矿太阳能电池的p型改性层

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摘要

Cu/Cu2O films grown by ion beam sputtering were used as p-type modified layers to improve the efficiency and stability of perovskite solar cells (PSCs) with an n-i-p heterojunction structure. The ratio of Cu to Cu2O in the films can be tuned by the oxygen flow ratio (O2/(O2 + Ar)) during the sputtering of copper. Auger electron spectroscopy was performed to determine the elemental composition and chemical state of Cu in the films. Ultraviolet photoelectron spectroscopy and photoluminescence spectroscopy revealed that the valence band maximum of the p-type Cu/Cu2O matches well with the perovskite. The Cu/Cu2O film not only acts as a p-type modified layer but also plays the role of an electron blocking buffer layer. By introducing the p-type Cu/Cu2O films between the low-mobility hole transport material, spiro-OMeTAD, and the Ag electrode in the PSCs, the device durability and power conversion efficiency (PCE) were effectively improved as compared to the reference devices without the Cu/Cu2O interlayer. The enhanced PCE is mainly attributed to the high hole mobility of the p-type Cu/Cu2O film. Additionally, the Cu/Cu2O film serves as a protective layer against the penetration of humidity and Ag into the perovskite active layer.
机译:通过离子束溅射生长的Cu / Cu2O膜用作p型改性层,以提高具有n-i-p异质结结构的钙钛矿太阳能电池(PSC)的效率和稳定性。可以通过在溅射铜时的氧气流量比(O2 /(O2 + Ar))来调节薄膜中Cu与Cu2O的比例。进行俄歇电子能谱分析以确定膜中Cu的元素组成和化学状态。紫外光电子能谱和光致发光光谱表明,p型Cu / Cu2O的价带最大值与钙钛矿非常匹配。 Cu / Cu 2 O膜不仅起到p型改性层的作用,还起到电子阻挡缓冲层的作用。通过在PSC中的低迁移率空穴传输材料,螺旋-OMeTAD和Ag电极之间引入p型Cu / Cu2O膜,与参考器件相比,有效提高了器件的耐用性和功率转换效率(PCE)没有Cu / Cu2O中间层。增强的PCE主要归因于p型Cu / Cu2O膜的高空穴迁移率。另外,Cu / Cu 2 O膜用作防止湿气和Ag渗透到钙钛矿活性层中的保护层。

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