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High performance ternary solar cells based on P3HT:PCBM and ZnPc-hybrids

机译:基于P3HT的高性能三元太阳能电池:PCBM和ZnPC-杂交种

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摘要

Single walled carbon nanotubes (SWCNTs) and reduced graphene oxide (rGO) covalently and non-covalently functionalised by zinc phthalocyanine (ZnPc) were added to P3HT:PCBM blend in order to investigate the effects of these hybrid materials on P3HT:PCBM organic solar cell performance. Adding a small amount of these hybrids to P3HT:PCBM blend does not significantly alter the absorption spectra of the latter nor its structure. ZnPc–rGO and ZnPc–SWCNT hybrid features have appeared on the P3HT:PCBM surface morphology as verified by SEM and AFM images. However these hybrid materials have caused significant effects on the electrical properties of the studied blends. An increase of about two orders of magnitudes has been observed in the electrical conductivity. Space charge limited conduction theory was employed to investigate the charge carriers' mobility whereas a thermionic emission model was used to evaluate the recombination rate based on an estimated diode ideality factor. Solar cell devices based on P3HT:PCBM:ZnPc–SWCNTs-co bonded have demonstrated best device performance with PCE of 5.3%, Jsc of 12.6 mA cm−2, Voc of 0.62 V and FF of 68%. A reference device based on bare P3HT:PCBM blend has exhibited PCE of just under 3.5%, Jsc of 9.3 mA cm−2, Voc of 0.62 V and FF of 60%.
机译:将单壁碳纳米管(SWCNT)和被锌酞菁(ZnPc)共价和非共价官能化的还原氧化石墨烯(rGO)添加到P3HT:PCBM共混物中,以研究这些杂化材料对P3HT:PCBM有机太阳能电池的影响性能。将少量这些杂化物添加到P3HT:PCBM混合物中不会显着改变后者的吸收光谱或其结构。 ZnPc–rGO和ZnPc–SWCNT杂化特征已出现在P3HT:PCBM表面形态上,这已通过SEM和AFM图像进行了验证。然而,这些杂化材料对所研究的共混物的电性能产生了显着影响。已经观察到电导率增加了大约两个数量级。采用空间电荷限制传导理论研究载流子的迁移率,而热电子发射模型基于估计的二极管理想因子用于评估复合率。基于P3HT:PCBM:ZnPc–SWCNTs-co键合的太阳能电池器件表现出最佳的器件性能,其中PCE为5.3%,Jsc为12.6 mA cm-2,Voc为0.62 V,FF为68%。基于裸露的P3HT:PCBM共混物的参考设备的PCE略低于3.5%,Jsc为9.3 mA cm-2,Voc为0.62 V,FF为60%。

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