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Improved photovoltaic performance from inorganic perovskite oxide thin films with mixed crystal phases

机译:利用混合晶相的无机钙钛矿氧化物薄膜改善光伏性能

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摘要

Inorganic ferroelectric perovskites are attracting attention for the realization of highly stable photovoltaic cells with large open-circuit voltages. However, the power conversion efficiencies of devices have been limited so far. Here, we report a power conversion efficiency of similar to 4.20% under 1 sun illumination from Bi-Mn-O composite thin films with mixed BiMnO3 and BiMn2O5 crystal phases. We show that the photocurrent density and photovoltage mainly develop across grain boundaries and interfaces rather than within the grains. We also experimentally demonstrate that the open-circuit voltage and short-circuit photocurrent measured in the films are tunable by varying the electrical resistance of the device, which in turn is controlled by externally applying voltage pulses. The exploitation of multifunctional properties of composite oxides provides an alternative route towards achieving highly stable, high-efficiency photovoltaic solar energy conversion.
机译:无机铁电培训粒子正在引起高度稳定的光伏电池的注意力,具有大开关电压。 然而,到目前为止,设备的功率转换效率受到限制。 在这里,我们报告了从Bi-Mn-o复合薄膜的1阳光照射的功率转换效率与具有混合的BIMNO3和BIMN2O5晶相的1阳光照射。 我们表明光电流密度和光电图主要在晶界和界面而不是谷物内产生。 我们还通过改变膜中测量的开路电压和短路光电流,通过改变装置的电阻,这又通过外部施加电压脉冲来控制。 复合氧化物多功能性质的利用提供了旨在实现高稳态,高效的光伏太阳能转换的替代路线。

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