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首页> 外文期刊>CERAMICS INTERNATIONAL >Enhancement in photovoltaic properties of bismuth ferrite/zinc oxide heterostructure solar cell device with graphene/indium tin oxide hybrid electrodes
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Enhancement in photovoltaic properties of bismuth ferrite/zinc oxide heterostructure solar cell device with graphene/indium tin oxide hybrid electrodes

机译:具有石墨烯/氧化铟锡混合电极的铋铁氧体/氧化锌异质结构太阳能电池装置的光伏性能增强

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摘要

Integrating of ferroelectric thin films with two-dimensional materials may provide a novel and unique characteristics in the field of optoelectronics due to the coupling of their distinctive intrinsic features. A heterostructure (bismuth ferrite/zinc oxide) device is fabricated with different types of the electrode to enhance the power conversion efficiency (PCE). A single-phase multiferroic BFO thin film is grown by atomic layer deposition (ALD) method and annealed in different environments such as helium, nitrogen, and oxygen. We investigated the effect of annealing parameters and different types of electrodes on solar cell applications. We observed that the leakage current 10 orders of magnitude was reduced by decreasing in the dielectric loss. Further, the power conversion efficiency (PCE) is improved from 4.1% to 7.4% with a hybrid transparent electrode (graphene/indium fin oxide). The value of PCE is further increased at a low temperature. So, the improvement in the key parameter of bismuth ferrite thin-film evidently highlights the importance of annealing atmosphere and graphene as an electrode in BFO thin film applications in optoelectronics.
机译:由于其独特的内在特征的耦合,具有二维材料的铁电薄膜在光电子领域中提供了一种新颖和独特的特性。用不同类型的电极制造异质结构(铋铁氧体/氧化锌)装置,以增强电力转换效率(PCE)。通过原子层沉积(ALD)方法生长单相多体的BFO薄膜,并在不同环境中退火,例如氦气,氮气和氧气。我们研究了退火参数和不同类型电极对太阳能电池应用的影响。我们观察到通过降低介电损耗,减少了漏电流10的数量级。此外,电力转换效率(PCE)从混合透明电极(石墨烯/铟纤维氧化物)提高了4.1%至7.4%。 PCE的值在低温下进一步增加。因此,铋铁氧体薄膜的关键参数的改善明显地突出了退火气氛和石墨烯作为光电子中BFO薄膜应用中的电极的重要性。

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