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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Ternary oxide BaSnO3 nanoparticles as an efficient electron-transporting layer for planar perovskite solar cells
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Ternary oxide BaSnO3 nanoparticles as an efficient electron-transporting layer for planar perovskite solar cells

机译:三元氧化物BasnO3纳米粒子作为平面钙钛矿太阳能电池的有效电子传输层

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摘要

Organic-inorganic hybrid perovskites are a promising candidate for fabricating high-efficiency solar cells. In this work, well-dispersed ternary oxide BaSnO3 (BSO) nanoparticles with high crystallinity were successfully synthesized by a facile peroxide-precipitate route. And then BSO was first used as an efficient electron-transporting layer in planar perovskite solar cells. Influences of the coverage, roughness and thickness of planar BSO layer on the photovoltaic performance of the solar cells were systemically investigated. It is found that better coverage of BSO layer on the transparent oxide electrodes can significant reduce current leakage and suitable thickness of electron-transporting layer is favorable to reduce series resistance. Both of them contribute to the improved power conversion efficiency of cell devices. Additionally, the BSO-based device exhibits a comparable device performances to the TiO2 one, which can be ascribed to the efficient charge extraction as BSO/perovskite interfaces, the low charge transfer resistance and the suppressed carrier recombination. The optimized BSO-based planar perovskite solar cells exhibits power conversion efficiency of 10.96% with Jsc of 17.45 mA/cm(2), Voc of 0.986 V and FF of 0.637. Thus, this work will pave the way for employing ternary oxide as electron-transporting material for high-performance perovskite solar cells. (C) 2017 Elsevier B.V. All rights reserved.
机译:有机 - 无机杂交Perovskites是制造高效太阳能电池的有希望的候选者。在这项工作中,通过体面的过氧化物沉淀途径成功地合成了具有高结晶度的井分散的三元氧化三元氧化物BasnO3(BSO)纳米颗粒。然后将BSO首先用作平面钙钛矿太阳能电池中的有效电子传输层。平面BSO层对太阳能电池的光伏性能的覆盖,粗糙度和厚度的影响得到了全身研究。结果发现,更好地覆盖透明氧化物电极上的BSO层可以显着降低电流泄漏,并且合适的电子传输层厚度有利,以减少串联电阻。它们都有助于细胞器件的改善功率转换效率。另外,基于BSO的装置对TiO 2的装置表现出可比较的装置的性能,其可以归因于BSO / Perovskite界面的有效电荷提取,低电荷传递电阻和抑制的载体重组。优化的BSO基平面钙钛矿太阳能电池显示器,可用功率转化效率为10.96%,JSC为17.45 mA / cm(2),VOC为0.986 V和FF为0.637。因此,这项工作将铺平用于使用三元氧化物作为高性能Perovskite太阳能电池的电子传输材料。 (c)2017年Elsevier B.V.保留所有权利。

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