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Spray deposition of exfoliated MoS2 flakes as hole transport layer in perovskite-based photovoltaics

机译:脱落的MoS2薄片的喷雾沉积作为钙钛矿型光伏电池中的空穴传输层

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We propose the use of solution-processed molybdenum disulfide (MoS) flakes as hole transport layer (HTL) for metal-organic perovskite solar cells. MoS bulk crystals are exfoliated in 2-propanol and deposited on perovskite layers by spray coating. We fabricated cells with glass/FTO/compact-TiO/mesoporous-TiO/CHNHPbI/spiro-OMeTAD/Au structure and cells with the same structure but with MoS flakes as HTL instead of spiro-OMeTAD, the most widely used HTL. The electrical characterization of the cells with MoS as HTL show promising power conversion efficiency -η- of 3.9% with respect to cells with pristine spiro-OMeTAD (η=3.1%). Endurance test on 800-hour shelf life has shown higher stability for the MoS-based cells (ΔPCE/PCE=-17%) with respect to the doped spiro-OMeTAD-based one (ΔPCE/PCE =-45%). Further improvements are expected with the optimization of the MoS deposition process
机译:我们建议使用溶液处理的二硫化钼(MoS)薄片作为金属有机钙钛矿太阳能电池的空穴传输层(HTL)。 MoS块状晶体在2-丙醇中剥落,并通过喷涂沉积在钙钛矿层上。我们制造了具有玻璃/ FTO /紧凑型TiO /中孔TiO / CHNHPbI /螺-OMeTAD / Au结构的电池,并制造了具有相同结构但MoS薄片为HTL的电池,而不是使用最广泛的HTL螺-OMeTAD。具有MoS作为HTL的电池的电特性显示,相对于具有原始螺-OMeTAD(η= 3.1%)的电池,其有希望的功率转换效率-η-为3.9%。相对于掺杂的基于螺旋-OMeTAD的电池(ΔPCE/ PCE = -45%),基于MoS的电池(ΔPCE/ PCE = -17%)的800小时保质期耐久性测试显示出更高的稳定性。 MoS沉积工艺的优化有望进一步改善

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