4.8 Article

Achieving High Efficiency in Solution-Processed Perovskite Solar Cells Using C60/C70 Mixed Fullerenes

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 10, 期 46, 页码 39590-39598

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.8b11049

关键词

fullerenes; perovskite solar cells; crystallinity of fullerenes; mixed fullerenes; electron-transporting layer

资金

  1. Japan Society for the Promotion of Science (JSPS) KAKENHI [JP15H05760, JP16H02285, 17K04970, 17H06609]
  2. Grants-in-Aid for Scientific Research [17H06609, 17K04970] Funding Source: KAKEN

向作者/读者索取更多资源

Fullerenes have attracted considerable interest as an electron-transporting layer in perovskite solar cells. Fullerene-based perovskite solar cells produce no hysteresis and do not require high-temperature annealing. However, high power conversion efficiency has been only achieved when the fullerene layer is thermally evaporated, which is an expensive process. In this work, the limitations of a solution-processed fullerene layer have been identified as high crystallinity and the presence of remnant solvents, in contrast to a thermally deposited C-60 film, which has low crystallinity and no remaining solvents. As a solution to these problems, a mixed C-60 and C-70 solution-processed film, which exhibits low crystallinity, is proposed as an electron-transporting layer. The mixed-fullerene-based devices produce power conversion efficiencies as high as that of the thermally evaporated C-60-based device (16.7%) owing to improved fill factor and open-circuit voltage. In addition, by vacuum-drying the mixed fullerene film, the power conversion efficiency of the solution-processed perovskite solar cells is further improved to 18.0%. This improvement originates from the enhanced transmittance and charge transport by removing the solvent effect. This simple and low-cost method can be easily used in any type of solar cells with fullerene as the electron-transporting layer.

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