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Large area perovskite solar modules with improved efficiency and stability

机译:大面积佩罗夫斯基特太阳能模块,提高了效率和稳定性

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The remarkable high power conversion efficiency (PCE) demonstrated by small area perovskite solar cells (PSCs) are still not accomplished by a clear assessment on long-term stability, while scalability on large modules still penalized a feasible production for the photovoltaic market. In this work, we propose a route to easily produce large area (active area 70 cm2) perovskite solar module with stable performance under real working conditions. The employed graphene interface engineering (GIE) strategy, together with the use of stable polymeric hole transporting layer, allowed to achieve stabilized PCE overcoming 14% with a T80 life-time (defined by the point at which device efficiency falls to 80% of the initial value) 27 times improved for PTAA cells compared to standard spiro-OMeTAD-based devices.
机译:小面积钙钛矿太阳能电池(PSC)证明了显着的高功率转换效率(PSC)仍然没有通过对长期稳定性的明确评估来实现,而大型模块的可扩展性仍然惩罚光伏市场的可行生产。在这项工作中,我们建议轻松生产大面积的路线(有源区70厘米 2 )Perovskite太阳能模块在实际工作条件下具有稳定的性能。采用的石墨烯界面工程(GIE)策略与使用稳定的聚合物空穴传输层一起允许稳定稳定的PCE克服14%的T. 80 与标准的螺旋-Metad的设备相比,PTAA细胞的生命时间(由设备效率下降到初始值的80%)的终止时间。

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