• Journal of Semiconductors
  • Vol. 41, Issue 5, 052203 (2020)
Yurong Jiang, Yue Yang, Yiting Liu, Shan Yan, Yanxing Feng, and Congxin Xia
Author Affiliations
  • School of Physics, Henan Key Laboratory of Photovoltaic Materials, Henan Normal University, Xinxiang 453007, China
  • show less
    DOI: 10.1088/1674-4926/41/5/052203 Cite this Article
    Yurong Jiang, Yue Yang, Yiting Liu, Shan Yan, Yanxing Feng, Congxin Xia. Mo5+ doping induced interface polarization for improving performance of planar perovskite solar cells[J]. Journal of Semiconductors, 2020, 41(5): 052203 Copy Citation Text show less
    (Color online) (a) The in-plane conductivity of HTL films with 0–2 mg/mL MoOx or MoO3 incorporated into PEDOT:PSS. (b) I–V curves test for Ag/MoO3/ITO and Ag/MoOx/ITO.
    Fig. 1. (Color online) (a) The in-plane conductivity of HTL films with 0–2 mg/mL MoOx or MoO3 incorporated into PEDOT:PSS. (b) IV curves test for Ag/MoO3/ITO and Ag/MoOx/ITO.
    (Color online) XPS profiles of (a) MoO3 and (b) MoOx.
    Fig. 2. (Color online) XPS profiles of (a) MoO3 and (b) MoOx.
    (Color online) (a) Device construction of the planar PSCs, and (b) cross-sectional SEM image of the planar PSC structures without an Ag electrode.
    Fig. 3. (Color online) (a) Device construction of the planar PSCs, and (b) cross-sectional SEM image of the planar PSC structures without an Ag electrode.
    (Color online) (a) The best J–V characteristics under illumination for the devices using pristine PEDOT:PSS, PEDOT:PSS-MoOx, and PEDOT:PSS-MoO3 as HTLs. (b) Histogram of PSCs using PEDOT:PSS-MoOx and PEDOT:PSS-MoO3 as HTLs.
    Fig. 4. (Color online) (a) The best J–V characteristics under illumination for the devices using pristine PEDOT:PSS, PEDOT:PSS-MoOx, and PEDOT:PSS-MoO3 as HTLs. (b) Histogram of PSCs using PEDOT:PSS-MoOx and PEDOT:PSS-MoO3 as HTLs.
    (Color online) Average photovoltaic parameter for 12 devices: (a) open-circuit voltage (Voc), (b) series resistance (Rs), (c) short-circuit current density (Jsc), (d) fill factor (FF).
    Fig. 5. (Color online) Average photovoltaic parameter for 12 devices: (a) open-circuit voltage (Voc), (b) series resistance (Rs), (c) short-circuit current density (Jsc), (d) fill factor (FF).
    (Color online) Nyquist plot of devices with various HTLs (pristine PEDOT:PSS, PEDOT:SS-MoOx and PEDOT:PSS-MoO3). Solid symbols are experimental results and solid lines are fitted results.
    Fig. 6. (Color online) Nyquist plot of devices with various HTLs (pristine PEDOT:PSS, PEDOT:SS-MoOx and PEDOT:PSS-MoO3). Solid symbols are experimental results and solid lines are fitted results.
    (Color online) (a) OCVD measurements for three types of devices. (b) Schematic of the proposed mechanism for the trap-assisted recombination.
    Fig. 7. (Color online) (a) OCVD measurements for three types of devices. (b) Schematic of the proposed mechanism for the trap-assisted recombination.
    (Color online) (a) Real part of the dielectric constant as a function of frequency in the dark. (b) Schematic diagram of electric-field distribution in the perovskite device based on PEDOT:PSS-MoOx. (c) J–V plots of the perovskite devices based on PEDOT:PSS-MoOx and PEDOT:PSS-MoO3 at different scanning directions taken in the dark, inset: the schematic diagraph of testing.
    Fig. 8. (Color online) (a) Real part of the dielectric constant as a function of frequency in the dark. (b) Schematic diagram of electric-field distribution in the perovskite device based on PEDOT:PSS-MoOx. (c) J–V plots of the perovskite devices based on PEDOT:PSS-MoOx and PEDOT:PSS-MoO3 at different scanning directions taken in the dark, inset: the schematic diagraph of testing.
    Yurong Jiang, Yue Yang, Yiting Liu, Shan Yan, Yanxing Feng, Congxin Xia. Mo5+ doping induced interface polarization for improving performance of planar perovskite solar cells[J]. Journal of Semiconductors, 2020, 41(5): 052203
    Download Citation