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Synthesis of SnO2 nanofibers and nanobelts electron transporting layer for efficient perovskite solar cells

机译:合成SnO2纳米纤维和纳米带电子传输层有效钙钛矿的太阳能电池

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The implementation of positive alternative electron transporting layers (ETLs) with excellent electronic properties is a most promising method to up-scale low-cost highly efficient perovskite solar cell (PSC) technology. The present work demonstrates the preparation of tin oxide (SnO2) nanofibers (NF) and nanobelts (NB) as an electron transporting layer (ETL) for PSCs. The smooth and uniform nanofibers and nanobelts have been prepared using an electrospinning technique followed by calcination at 600 degrees C. Thermogravimetric analysis (TGA) analysis performed on the as-spun polyvinylpyrrolidone-tin oxide (PVP-SnO2) composite suggests that a calcination temperature of 600 degrees C is required to obtain pure SnO2 and to ensure complete removal of PVP along with other organic solvents. The structural analysis confirmed the presence of the pure tetragonal rutile phase of SnO2 nanofibers and nanobelts. The prepared nanofibers and nanobelts were further used as ETLs for PSCs. Our optimized experimental parameters yielded a J(SC) of 22.46 mA cm(-2), a V-OC of 1.081 V and FF of 66, leading to >16 power conversion efficiency (PCE) for SnO2 nanobelts using an (FAPbI(3))(0.85)(MAPbI(3))(0.15) perovskite absorber layer with good stability. The obtained PCE is much higher than that of the SnO2 NF (12.893) morphology. Nevertheless, the synthesis of SnO2 NF/NB ETLs provides a simple, low-cost and large-scale method for PSCs.
机译:实施积极的选择电子传输层(etl)是一个最优秀的电子属性有前途的方法来伸展的低成本高有效的钙钛矿太阳能电池(PSC)技术。目前的准备工作氧化锡(SnO2)纳米纤维(NF)和纳米带(NB)作为电子传输层(ETL)已经被。纳米已经准备使用电纺的技术煅烧紧随其后在600度c,热重分析矫正性大动脉转位(TGA)分析对纺制执行polyvinylpyrrolidone-tin氧化物(PVP-SnO2)综合表明,煅烧温度获得所需的600摄氏度是纯粹的SnO2并确保完整切除PVP其他有机溶剂。确认的存在纯粹的正方金红石相的SnO2纳米纤维和纳米带。准备的纳米纤维和纳米带进一步用作已经etl。实验参数J (SC)为22.46(2)马厘米,1.081 V的V-OC和FF的66%,导致在功率转换效率16%使用一个(PCE)对SnO2纳米带(FAPbI (3)) (0.85) (MAPbI(3))(0。15)perovskite吸收层具有良好的稳定性。PCE SnO2 NF的比这高得多(12.893%)形态。SnO2 NF / NB etl提供了一个简单、低成本已经和大规模的方法。

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