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High conductivity Ag-based metal organic complexes as dopant-free hole-transport materials for perovskite solar cells with high fill factors

机译:高导电率的基于Ag的金属有机配合物,作为高掺杂系数钙钛矿型太阳能电池的无掺杂空穴传输材料

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摘要

Hole-transport materials (HTMs) play an important role as hole scavenger materials in the most efficient perovskite solar cells (PSCs). Here, for the first time, two Ag-based metal organic complexes (HA1 and HA2) are employed as a new class of dopant-free hole-transport material for application in PSCs. These HTMs show excellent conductivity and hole-transport mobility. Consequently, the devices based on these two HTMs exhibit unusually high fill factors of 0.76 for HA1 and 0.78 for HA2, which are significantly higher than that obtained using spiro-OMeTAD (0.69). The cell based on HA1-HTM in its pristine form achieved a high power conversion efficiency of 11.98% under air conditions, which is comparable to the PCE of the cell employing the well-known doped spiro-MeOTAD (12.27%) under the same conditions. More importantly, their facile synthesis and purification without using column chromatography makes these new silver-based HTMs highly promising for future commercial applications of PSCs. These results provide a new way to develop more low-cost and high conductivity metal-complex based HTMs for efficient PSCs.
机译:空穴传输材料(HTM)在最有效的钙钛矿太阳能电池(PSC)中作为空穴清除剂发挥重要作用。在这里,首次将两种基于Ag的金属有机配合物(HA1和HA2)用作一类用于PSC的新型无掺杂空穴传输材料。这些HTM具有出色的导电性和空穴传输迁移率。因此,基于这两个HTM的设备显示出异常高的填充因子,HA1为0.76,HA2为0.78,大大高于使用spiro-OMeTAD(0.69)获得的填充因子。基于HA1-HTM原始形式的电池在空气条件下实现了11.98%的高功率转换效率,这与在相同条件下采用众所周知的掺杂螺-MeOTAD的电池的PCE(12.27%)相当。 。更重要的是,它们易于合成和纯化,而无需使用柱色谱法,这些新的基于银的HTM对于PSC的未来商业应用极有希望。这些结果为开发更多的低成本和高电导率的基于金属配合物的HTM提供了一种新的方法,以用于高效的PSC。

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