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Enhanced power conversion efficiency of p-i-n type organic solar cells by employing a p-layer of palladium phthalocyanine

机译:通过使用p层酞菁钯层提高p-i-n型有机太阳能电池的功率转换效率

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摘要

We demonstrate an enhancement in the power conversion efficiency (PCE) of p-i-n type organic solar cells consisting of zinc phthalocyanine (ZnPc) and fullerene (C60) using a p-layer of palladium phthalocyanine (PdPc). Solar cells employing three different device structures such as ZnPc/ZnPc:C60/C60, PdPc/PdPc:C60/C60, and PdPc/ZnPc:C60/C60 with varying thickness of mixed interlayers were fabricated by thermal evaporation. The mixed i-layers were deposited by co-evaporation of MPc (M=Zn,Pd) and C60 by 1:1 ratio. PCE of 3.7% was obtained for optimized cells consisting of PdPc/ZnPc:C60/C60, while cells with device structure of ZnPc/ZnPc:C60/C60 showed PCE of 3.2%.
机译:我们展示了使用p层酞菁钯(PdPc)组成的由锌酞菁(ZnPc)和富勒烯(C60)组成的p-i-n型有机太阳能电池的功率转换效率(PCE)的增强。通过热蒸发来制造采用三种不同的器件结构的太阳能电池,所述器件结构诸如ZnPc / ZnPc:C60 / C60,PdPc / PdPc:C60 / C60和PdPc / ZnPc:C60 / C60,并且具有不同的混合中间层厚度。通过将MPc(M = Zn,Pd)和C60以1:1的比例共蒸发来沉积混合的i层。对于由PdPc / ZnPc:C60 / C60组成的优化电池,PCE为3.7%,而具有ZnPc / ZnPc:C60 / C60器件结构的电池的PCE为3.2%。

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