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All-vacuum deposited and thermally stable perovskite solar cells with F4-TCNQ/CuPc hole transport layer

机译:全真空沉积和热稳定的钙钛矿太阳能电池,具有F4-TCNQ / CUPC孔输送层

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Hole transporting layers (HTLs) play a crucial role in the realization of efficient and stable perovskite solar cells (PSCs). Copper phthalocyanine (CuPc) is a promising HTL owing to its thermal stability and favorable band alignment with the perovskite absorber. However, the power conversion efficiency (PCE) of PSCs with a CuPc HTL is still lagging behind highly efficient solar cells. Herein, a p-type tetrafluoro-tetracyanoquinodimethane (F4-TCNQ) is employed as an interlayer between the perovskite and CuPc HTL in all-vacuum deposited PSCs. The F4-TCNQ interlayer improves the conductivity of both MAPbI(3) and CuPc, reduces the shunt pathway and facilitates an efficient photoexcited holes transfer from the valance band of the MAPbI(3) to the LUMO of the F4-TCNQ. Consequently, the best solar cell device with an F4-TCNQ interlayer achieved a PCE of 13.03% with a remarkable improvement in fill factor. Moreover, the device showed superior stability against thermal stress at 85 & xfffd;C over 250 h and retained ?95% of its initial efficiency. This work demonstrates a significant step towards all-vacuum deposited perovskite solar cells with high thermal stability.
机译:空穴传输层(HTLS)在实现高效稳定的钙钛矿太阳能电池(PSC)中起着至关重要的作用。铜酞菁(CUPC)是由于其热稳定性和与钙钛矿吸收器的热稳定性和良好的带对准而有前途的HTL。然而,具有CUPC HTL的PSC的功率转换效率(PCE)仍然滞留在高效的太阳能电池后面。这里,p型四氟 - 四环喹啉二甲烷(F4-TCNQ)用作所有真空沉积的PSC中钙钛矿和CupC HTL之间的中间层。 F4-TCNQ中间层改善了MAPBI(3)和CUPC的电导率,减少了分流路径,并利用从MAPBI(3)的衡值带传递到F4-TCNQ的LUMO的有效的光屏蔽孔。因此,具有F4-TCNQ中间层的最佳太阳能电池器件实现了13.03%的PCE,填充因子显着提高。此外,该器件在85&XFFFD下的热应力稳定性稳定性稳定性,速度超过250小时并保留了95%的初始效率。这项工作展示了具有高热稳定性的全真空沉积的钙钛矿太阳能电池的重要步骤。

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