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Ultra-thin ZnO film as an electron transport layer for realizing the high efficiency of organic solar cells

机译:ZnO超薄薄膜作为电子传输层,可实现有机太阳能电池的高效率

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To overcome the limits of low charge transport efficiency and high absorption in the UV region of conventional thick ZnO layers in organic solar cells, herein we introduce an ultra-thin ZnO film (4 nm) into PBDTTT-CF:PC70BM bulk heterojunction organic solar cells, as the electron transport layer, and realize a power conversion efficiency of 7.51%, which is dramatically higher than that of a device using general ZnO film (28.1 nm). Various techniques from both steady-state and ultra-fast views reveal that the devices with an ultra-thin ZnO film (less than 10 nm) show a higher built-in potential compared to the device with a 28.1 nm ZnO film. Such an enhancement of the built-in potential could facilitate the photo-generated excitons dissociating into free charge carriers and benefit the transport of charge carriers to the electrode. Thus, we have supplied an efficient electron conducting layer not only for the photovoltaic community but also for other photoelectronic devices.
机译:为了克服有机太阳能电池中常规厚ZnO层在UV区的低电荷传输效率和高吸收的局限性,我们在PBDTTT-CF:PC 70 BM块状异质结有机太阳能电池作为电子传输层,实现了7.51%的功率转换效率,大大高于使用普通ZnO膜(28.1 nm)的器件的功率转换效率。从稳态和超快角度来看,各种技术都表明,与具有28.1 nm ZnO膜的器件相比,具有超薄ZnO膜(小于10 nm)的器件显示出更高的内置电势。内建电位的这种增强可以促进光生激子解离成自由电荷载流子,并有利于电荷载流子向电极的传输。因此,我们不仅为光伏社区,而且为其他光电设备提供了有效的电子导电层。

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