Mamun Abdullah Al, Ava Tanzila Tasnim, Zhang Kai, Baumgart Helmut, Namkoong Gon
Department of Electrical and Computer Engineering, Old Dominion University, Applied Research Centre, 12050 Jefferson Ave, Newport News, VA 23606, USA.
Phys Chem Chem Phys. 2017 Jul 21;19(27):17960-17966. doi: 10.1039/c7cp02523h. Epub 2017 Jun 30.
Carbon is inherently abundant in nature and relatively inexpensive, which can potentially reduce the manufacturing cost of solar cells. In recent years, carbon has been used as a hole transport layer or counter electrode in perovskite solar cells. Herein, we demonstrate that carbon can also be used as a charge transport layer capable of enhancing the energy conversion efficiency of a CHNHPbICl solar cell when carbon is combined with PCBM. Particularly, we have been able to deposit an ultra-flat carbon layer using an e-beam irradiation method, which exhibited much better conductivity than the competitive PCBM/C60 layer. In addition, quantitative analysis of interfacial charge dynamics shows that the quenching efficiency of PCBM/carbon is comparable to that of PCBM/C60 but better interface defect passivation and improved series and shunt resistances were observed when PCBM/carbon was employed. For the photovoltaic performance, the reference perovskite solar cell fabricated from the widely used PCBM/C60 has a power conversion efficiency (PCE) of 14% while the perovskite solar cell with PCBM/carbon has an increased PCE of 16%. Our results demonstrate the potential of the use of cost-effective carbon for perovskite solar cells, which could reduce production costs.
碳在自然界中本就储量丰富且相对廉价,这有可能降低太阳能电池的制造成本。近年来,碳已被用作钙钛矿太阳能电池中的空穴传输层或对电极。在此,我们证明,当碳与PCBM结合时,碳还可用作电荷传输层,能够提高CHNHPbICl太阳能电池的能量转换效率。特别是,我们能够使用电子束辐照法沉积超平坦的碳层,该碳层表现出比具有竞争力的PCBM/C60层更好的导电性。此外,界面电荷动力学的定量分析表明,PCBM/碳的猝灭效率与PCBM/C60相当,但当使用PCBM/碳时,观察到更好的界面缺陷钝化以及串联电阻和并联电阻的改善。对于光伏性能,由广泛使用的PCBM/C60制成的参考钙钛矿太阳能电池的功率转换效率(PCE)为14%,而具有PCBM/碳的钙钛矿太阳能电池的PCE提高到了16%。我们的结果证明了在钙钛矿太阳能电池中使用具有成本效益的碳的潜力,这可以降低生产成本。